Dr. Ho Soon Min

Dr. Ho Soon Min

Professor
INTI International University, Malaysia


Highest Degree
Ph.D. in Materials Chemistry from Universiti Putra Malaysia, Malaysia

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Area of Interest:

Chemistry
100%
Material Chemistry
62%
Environmental Chemistry
90%
Chemical Engineering
75%
Nanochemistry
55%

Selected Publications

  1. Soonmin, H., M.B. Tahil, S.N. Das and M.R. Das, 2019. Preparation of thin films by SILAR and spin coating method. Eurasian J. Anal. Chem., 14: 165-172.
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  2. Soonmin, H., 2019. Raman investigations of metal chalcogenide thin films (a short review). Oriental J. Chem., 35: 1-7.
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  3. Min, H.S., S.E.D. Fertahi, T. Bouhal, N.S. Naa and M.A.C. Munaaim, 2019. Solar energy development: Case study in Malaysia and Morocco. Int. J. Emerg. Technol., 10: 106-113.
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  4. Min, H.S., 2019. Properties of Thin Films Deposited on Different Substrates: A Review. In: Metal Chalcogenide Nanostructures: Characteristics and Synthesis, Min, H.S. and Y. Al-Douri (Eds.). Chapter 4, OMICS International, Hyderabad, India, ISBN: 978-1-63278-029-4, pp: 53-64.
  5. Min, H.S., 2019. Physical and Optical Properties of Cu4SnS4 Nanostructured Thin Films. In: Metal Chalcogenide Nanostructures: Characteristics and Synthesis, Min, H.S. and Y. Al-Douri (Eds.). Chapter 7, OMICS International, Hyderabad, India, ISBN: 978-1-63278-029-4, pp: 99-112.
  6. Min, H.S., 2019. Nanostructure Thin Films Prepared by Using PLD and SILAR Method. In: Advances in Applied Science and Technology, Volume 3, Tuzemen, S. and F. Khan (Eds.). Chapter 11, Book Publisher International, India, ISBN: 978-93-89246-54-4, pp: 145-159.
  7. Min, H.S. and E. Ajenifuja, 2019. A short review of recent advances in copper oxide nanostructured thin films. Res. J. Chem. Environ., 23: 138-145.
  8. Ho, S.M., S.A. Vanalakar, G. Ahmed and N.S. Vidya, 2019. A review of nanostructured thin films for gas sensing and corrosion protection. Mediterr. J. Chem., 7: 433-451.
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  9. Ho, S.M., M. Sreekanth, C. Ramkumar, M. Archana, K.G. Deepa and A.S.B. Mohammad, 2019. Preparation of CuInSe2 thin films by using various methods (a short review). Orient. J. Chem., 35: 1-13.
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  10. Ho S.M., A. Lomi, C.O. Edmund and L.R. Urrego, 2019. Investigation of solar energy: The case study in Malaysia, Indonesia, Colombia and Nigeria. Int. J. Renew. Energy Res., 9: 86-95.
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  11. Ho S. and A. Ayeshamariam, 2019. Review of recent research on penternary nanostructured thin films. ARPN J. Eng. Appl. Sci., 14: 271-277.
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  12. Soonmin, H., S. Wagh and A. Kadier, 2018. Sources of Clean Energy: Solar and Hydropower Energy. In: Renewable Energy Sources and Environment Protection, Doifode, S.K. and A.G. Matani (Eds.). Chapter 2, International Research Publication House, Delhi, India, ISBN: 978-93-87388-19-2, pp: 9-23.
  13. Soonmin, H., A. Kadier and I.A. Gondal, 2018. Renewable Energy Technologies: A Survey. In: Current Progress in Materials Science: Research and Development, Min, H.S. (Ed.). Chapter 3, ASRPC Publishing Company, Aberdeen, Scotland, ISBN: 978-0-6480677-2-6, pp: 23-36.
  14. Min, H.S., S.I. Abd Razak, M.V. Nagalakshmi and D.H. Lataye, 2018. Activated Carbon from Various Agricultural Wastes. In: Current Progress in Applied Materials Science, Malek, N.A.N.N. (Ed.). UTM Publisher, Malaysia, ISBN: 978-983-52-1580-3, pp: 161-178.
  15. Min, H.S., S. Wagh, A. Kadier, I.A. Gondal, N.A.P.B. Abdul Azim and M.K. Mishra, 2018. Renewable Energy Technologies. In: Renewable Energy and Wastewater Treatment, Min, H.S. (Ed.). Chapter 1, Ideal International E-Publication Pvt. Ltd., India, ISBN: 978-93-86675-44-6, pp: 1-31.
  16. Min, H.S., M.J. Rashid and K. Mohanraj, 2018. Review of Chalcogenide based Thin Film Solar Cells. In: Renewable Energy and Wastewater Treatment, Min, H.S. (Ed.). Chapter 2, Ideal International E-Publication Pvt. Ltd., India, ISBN: 978-93-86675-44-6, pp: 32-44.
  17. Min, H.S., K. Mohanraj, M.H.D. Othman and M.R. Adam, 2018. Raman Spectroscopy Study of Thin Films: A Review. In: Metal Chalcogenide Thin Films: Deposition and Characterization, Min, H.S., B. Ghosh and C.S. Prajapati (Eds.). Albert Science International Organization, India, ISBN: 978-81-939231-1-5, pp: 1-11.
  18. Min, H.S., C.U. Vyas, P. Pataniya, K.D. Patel and S. Mahato, 2018. A short review of CdTe and CdSe films: Growth and characterization. Mediterr. J. Chem., 7: 115-124.
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  19. Min, H.S., 2018. Carbon Nanotube Wires and Cables: Review. In: Current Progress in Materials Science: Research and Development, Min, H.S. (Ed.). Chapter 1, ASRPC Publishing Company, Aberdeen, Scotland, ISBN: 978-0-6480677-2-6, pp: 1-11.
  20. Min, H.S., 2018. Bamboo-based Activated Carbon: A Review. In: Current Progress in Materials Science: Research and Development, Min, H.S. (Ed.). Chapter 2, ASRPC Publishing Company, Aberdeen, Scotland, ISBN: 978-0-6480677-2-6, pp: 12-22.
  21. Min, H.S., 2018. A Short Review of the Investigations of Thin Films Deposited on Different Substrates. In: Current Progress in Materials Science: Research and Development, Min, H.S. (Ed.). Chapter 4, ASRPC Publishing Company, Aberdeen, Scotland, ISBN: 978-0-6480677-2-6, pp: 37-51.
  22. Min, H.S., 2018. A Review of Metal Oxide based Thin Films. In: Metal Chalcogenide Thin Films: Deposition and Characterization, Min, H.S., B. Ghosh and C.S. Prajapati (Eds.). Albert Science International Organization, India, ISBN: 978-81-939231-1-5, pp: 1-11.
  23. Min, H.S. and M.J. Rashid, 2018. A Review of Thin Film Chalcogenide Photovoltaic Materials. In: Renewable Energy Sources and Environment Protection, Doifode, S.K. and A.G. Matani (Eds.). Chapter 6, International Research Publication House, Delhi, India, ISBN: 978-93-87388-19-2, pp: 79-91.
  24. Ho, S.M., S. Mariyappan, M. Meet and H.M. Jaysukh, 2018. Review on dye-sensitized solar cells based on polymer electrolytes. Int. J. Eng. Technol., 7: 3001-3006.
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  25. Ho, S.M., S. Gincy and A.V. Sharadrao, 2018. Studies on Cu2SnS3 thin films: Review. ARPN J. Eng. Appl. Sci., 13: 4152-4159.
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  26. Ho, S.M., O.I. Olusola, D.C. Sharma and W. Mahmood, 2018. Zinc telluride thin films: A review. Asian J. Chem., 30: 469-473.
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  27. Ho, S.M., M.A. Mahadik, J.S. Jang and V.N. Singh, 2018. Metal oxide based chalcogenides heterostructure thin film photoanodes for photoerochemical solar hydrogen generation. Asian J. Chem., 31: 18-24.
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  28. Ho, S.M. and R. Amala, 2018. A review of recent results on cyclic voltammetry studies of metal chalcogenide thin films. J. Eng. Appl. Sci., 13: 2773-2779.
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  29. Ho Soon Min, Kushal Qanungo, Rabia Nazir, 2018. Removal of Heavy Metals from Waste Water using Alumina and Fly Ash: Review. In: Renewable Energy and Wastewater Treatment, Min, H.S. (Ed.). Chapter 5, Ideal International E-Publication Pvt. Ltd., India, ISBN: 978-93-86675-44-6, pp: 65-87.
  30. Soonmin, H., 2017. Study of structural properties of Ni3 Pb2 S2 Films. Orient. J. Chem., 33: 2134-2137.
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  31. Soonmin, H., 2017. Studies of power conversion efficiency and optical properties of ni3pb2s2 thin films. Makara J. Sci., 21: 119-124.
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  32. Min, H.S., 2017. Zeolites and their Applications: Review. In: Zeolites: Synthesis, Characterisation and Practices, Min, H.S., N.A. Nizam, A.O. Haruna and P.A. Alaba (Eds.). Chapter 1, Ideal International E-Publication Pvt. Ltd., India, ISBN: 978-93-86675-16-3, pp: 1-7.
  33. Min, H.S., 2017. Production of Activated Carbon for Water Treatment: Review. In: Waste Management and Utilization Techniques, Matani, A.G. (Ed.). Chapter 1, International Research Publication House, Delhi, India, ISBN: 978-93-86138-88-0, pp: 1-15.
  34. Min, H.S., 2017. Preparation and Characterization of Electrodeposited Cu4SnS4 Thin Films. Ideal International E-Publication Pvt. Ltd., Indore, India, ISBN: 978-81-934005-0-0, Pages: 73.
  35. Min, H.S., 2017. Chemical Bath Deposition of Crystalline Cu4SnS4 Thin Films. OMICS International, Foster City, CA., USA., ISBN: 978-1-63278-006-5, Pages: 42.
  36. Kamal, S., M. Rehman, S. Rehman, Z.H. Nazli and N. Yaqoob et al., 2017. Blends of Algae with Natural Polymers. In: Algae Based Polymers, Blends and Composites: Chemistry, Biotechnology and Materials Science, Zia, K.M., M. Zuber and M. Ali (Eds.). Chapter 10, Elsevier Inc., New York, USA., ISBN: 9780128123614, pp: 371-413.
  37. Ho, S.M., 2017. X-Ray photoelectron spectroscopy studies of metal chalcogenide thin films: A review. Inorg. Chem. Indian J., Vol 12. .
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  38. Ho, S.M., 2017. Synthesis and characterization of ternary Cu4SnS4 nanocrystalline semiconductor thin films: A review. Int. J. Res. Eng. Innov., 1: 143-146.
  39. Ho, S.M., 2017. Synthesis and characterization of Ag,2S nano crystalline thin films: A review. Glob. Sci. Chron., 1: 1-5.
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  40. Ho, S.M., 2017. Study of the growth of magnesium oxide thin films using X-ray diffraction technique: mini review. Rec. Adv. Petrochem. Sci., .
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  41. Ho, S.M., 2017. Studies on chemically deposited copper tin sulphide thin films: EDX and SEM investigations. Res. J. Chem. Environ., 21: 33-37.
  42. Ho, S.M., 2017. Preparation of nanocrystalline aluminum oxide thin films: A review. Int. J. Chem.. Sci., Vol 15 .
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  43. Ho, S.M., 2017. Influence of deposition time on optical properties of chemically deposited nickel lead sulphide thin films. Int. J. Applied Chem., 13: 111-120.
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  44. Ho, S.M., 2017. Growth and characterization of cuinte thin films: Review. J. Eng. Appl. Sci., 12: 3720-3723.
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  45. Ho, S.M., 2017. Chemical bath deposited copper tin sulphide thin films in the presence of complexing agent: EDX and SEM analysis. Der Pharma Chem., 9: 77-81.
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  46. Ho, S.M., 2017. Characterization of nickel lead sulphide thin films: X-Ray diffraction studies. ARPN J. Eng. Appl. Sci., 12: 4378-4382.
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  47. Ho, S.M., 2017. Atomic microscopy studies on sulfur-,selenium, and tellurium based metal chalcogenide thin films. A review. Afr. J. Pure Appl. Chem., 11: 42-49.
  48. Ananth, C., H.S. Min, C.S. Chin and P. Avirajamanjula, 2017. A Brief Outline of Technical Challenges in Wireless Technology. Vol. 6, Rakuten Kobo Inc. Publishing, Toronto, Canada, ISBN: 978-81-910-748-7-1, Pages: 174.
  49. Ho, S.M., 2016. Transmission electron microscopy studies on chalcogenide thin films. J. Chem. Pharmaceut. Res., 8: 71-74.
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  50. Ho, S.M., 2016. Synthesis of thin films on flexible substrates: A review. Middle-East J. Scient. Res., 24: 2235-2238.
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  51. Ho, S.M., 2016. Synthesis and properties of cadmium oxide thin films: A review. Int. J. Curr. Adv. Res., 5: 1038-1041.
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  52. Ho, S.M., 2016. Synthesis and characterization of electrodeposited zinc oxide nanostructures for dye sensitized solar cells-A review. Chem. Sci. Trans., 5: 279-284.
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  53. Ho, S.M., 2016. Study of optical properties of thin films by means of UV-Visible spectrophotometer: A review. Middle East J. Scient. Res., 24: 1227-1231.
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  54. Ho, S.M., 2016. Rutherford backscattering spectrometry studies on the properties of metal chalcogenide thin films: A review. Eur. J. Scient. Res., 142: 343-349.
  55. Ho, S.M., 2016. Preparation of ternary (Ni3Pb2S2) thin films by chemical bath deposition method. Int. Res. J. Pure Applied Chem., 10: 1-5.
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  56. Ho, S.M., 2016. Preparation and characterization of tungsten oxide thin films. J. Chem. Pharmaceut. Res., 8: 414-416.
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  57. Ho, S.M., 2016. Preparation and characterization of nickel oxide thin films: A review. Int. J. Applied Chem., 12: 87-93.
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  58. Ho, S.M., 2016. Power conversion efficiency in thin film solar cell: A review. Int. J. Chem. Sci., 14: 143-151.
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  59. Ho, S.M., 2016. Optical properties of ternary thin films (Ni3Pb2S2) prepared by chemical bath deposition technique. Res. J. Chem. Environ., 20: 29-33.
  60. Ho, S.M., 2016. Metal selenide semiconductor thin films: A review. Int. J. ChemTech Res., 9: 390-395.
  61. Ho, S.M., 2016. Metal chalcogenide thin films for photoelectrochemical cell applications: A review. Middle East J. Scient. Res., 24: 1232-1235.
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  62. Ho, S.M., 2016. Electrodeposition of ternary thin films: A review. Int. J. Chem. Pharmaceut. Anal., 3: 1-5.
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  63. Ho, S.M., 2016. Chemical bath deposition of ZnSe thin films: Investigations of the growth conditions. Am. Chem. Sci. J., 14: 1-6.
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  64. Ho, S.M., 2016. Chemical bath deposited copper tin sulphide thin films: SEM and EDX analysis. J. Applied Sci. Res., 12: 12-15.
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  65. Ho, S.M., 2016. Atomic force microscopy studies on the surface morphologies of chemical bath deposited CuS thin films. Oriental J. Chem., 32: 1515-1519.
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  66. Ho, S.M., 2016. Application of energy dispersive X-ray analysis technique in chalcogenide metal thin films: Review. Middle East J. Scient. Res., 24: 445-449.
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  67. Ho, S.M., 2016. A scanning electron microscopy investigation of semiconductor metal chalcogenide thin films: A review. Der Pharma Chemica, 8: 13-16.
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  68. Ho, S.M., 2016. A review on thin films on indium tin oxide coated glass substrate. Asian J. Chem., 28: 469-472.
  69. Ho, S.M., 2016. A review on the sputtering deposition film growth. J. Applied Sci. Res., 12: 44-48.
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  70. Ho, S.M., 2016. A review on the organic solar cells. Aust. J. Basic Applied Sci., 10: 21-24.
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  71. Ho, S.M., 2016. A review on the Penternary compound thin films. Aust. J. Basic Applied Sci., 10: 334-338.
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  72. Ho, S.M., 2016. A review on copper oxide thin films. Int. J. Recent Scient. Res., 7: 11914-11918.
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  73. Ho, S.M., 2016. A brief review on the polymer thin film solar cells. Int. J. Scient. Res. Sci. Eng. Technol., 2: 1-5.
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  74. Ho, S.M., 2016. A brief review of the growth of pulsed laser deposited thin films. Br. J. Applied Sci. Technol., 14: 1-6.
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  75. Ho, S.M., 2015. UV-Visible studies of chemical bath deposited Ni3Pb2S2 films. J. Chem. Pharmaceut. Res., 7: 50-55.
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  76. Ho, S.M., 2015. Thermal evaporation of thin films: Review. Middle-East J. Scient. Res., 23: 2695-2699.
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  77. Ho, S.M., 2015. The applications of atomic force microscopy in materials science research. Chem. Sci. J., Vol. 6. 10.4172/2150-3494.1000e107.
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  78. Ho, S.M., 2015. Synthesis of binary metal chalcogenides using SILAR method: Review. Chem. Sci. Rev. Lett., 4: 1305-1310.
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  79. Ho, S.M., 2015. Spray pyrolysis deposition of thin films: Review. Eur. J. Scient. Res., 136: 446-450.
  80. Ho, S.M., 2015. Scanning electron microscopy study of surface morphology of Ni3Pb2S2 thin films. Asian J. Chem., 27: 3851-3853.
  81. Ho, S.M., 2015. Role of complexing agent in chemical bath deposition of thin films: A review. Aust. J. Basic Applied Sci., 9: 625-629.
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  82. Ho, S.M., 2015. Review on metal telluride thin films. Der Pharma Chemica, 7: 56-60.
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  83. Ho, S.M., 2015. Quaternary thin films: A review. Res. J. Chem. Environ., 19: 48-52.
  84. Ho, S.M., 2015. Morphological studies of Ni3Pb2S2 thin films by means of scanning electron microscopy technique. Int. J. Applied Chem., 11: 363-369.
  85. Ho, S.M., 2015. Electro deposition of thin films in the presence of complexing agent: A review. Int. J. Applied Chem., 11: 539-544.
  86. Ho, S.M., 2015. Chemical bath deposition of nickel lead sulphide films: SEM studies. J. Chem. Chem. Res., 1: 14-19.
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  87. Ho, S.M., 2015. Chalcogenide thin films prepared using chemical bath deposition method: Review. Res. J. Applied Sci. Eng. Technol., 11: 1058-1065.
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  88. Ho, S.M., 2015. Cadmium chalcogenide thin films. J. Chem. Pharmaceut. Res., 7: 618-623.
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  89. Ho, S.M., 2015. A review on the absorber materials in dye sensitized solar cell. J. Multidisciplin. Eng. Sci. Stud., 1: 25-29.
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  90. Ho, S.M. and T.J.S. Anand, 2015. A review of chalcogenide thin films for solar cell applications. Indian J. Sci. Technol., Vol. 8, No. 12. 10.17485/ijst/2015/v8i12/67499.
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  91. Ho, S.M., K. Anuar and W.T. Tan, 2014. Chemical bath deposited lead sulphide thin films: preparation and characterization. World Mech., 1: 1-6.
  92. Ho, S.M., 2014. Influence of complexing agent on the growth of chemically deposited Ni3Pb2S2 thin films. Oriental J. Chem., 30: 1009-1012.
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  93. Ho, S.M., 2014. Atomic force microscopy investigation of the surface morphology of Ni3Pb2S2 thin films. Eur. J. Scient. Res., 125: 475-480.
  94. Min, H.S., A. Kassim, L.K. Siang and T.W. Tee, 2013. Investigation of morphological properties of the copper sulfide films in acidic media based on atomic force microscopy. Int. Res. J. Chem., 3: 62-68.
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  95. Min, H.S., 2013. Chalcogenide thin films prepared by chemical bath deposition. Chem. Sci. J., Vol. 4. 10.4172/2150-3494.1000075.
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  96. Ho, S.M., K. Anuar and W.T. Tan, 2013. Thickness dependent characteristics of chemically deposited tin sulphide films. Universal J. Chem., 1: 170-174.
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  97. Ho, S.M., K. Anuar and W.T. Tan, 2013. The role of bath temperature in aqueous acidic chemically PbS films. J. Basic Applied Scient. Res., 3: 353-357.
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  98. Kassim, A., T.W. Tee, H.S. Min and S. Nagalingam, 2012. Temperature-dependent surface topography analysis of SnSe thin films using atomic force microscopy. Asian J. Res. Chem., 5: 291-294.
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  99. Kassim, A., H.S. Min, L.Y. Yee, T.W. Tee and S. Nagalingam, 2012. Complexing agent effect on the properties of iron sulphide thin films. Can. J. Pure Applied Sci., 6: 1863-1867.
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  100. Kassim, A. and H.S. Min, 2012. Science and Engineering. In: Issues in Engineering Research and Application, Acton, Q.A. (Ed.). Chapter 14, Scholarly Editions, Atlanta, GA., USA., ISBN: 978-1-4816-4697-0, pp: 163-171.
  101. Kassim, A., W.T. Tan, S.M. Ho and S. Nagalingam, 2011. Composition, morphology and optical characterization of chemical bath deposited ZnSe thin films. Eur. J. Applied Sci., 3: 75-80.
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  102. Kassim, A., T.W. Tee, H.S. Min and T.X. Yee, 2011. Deposition and characterization of tin sulphide thin films by chemical bath deposition technique. Int. J. Applied Chem., 7: 175-182.
  103. Kassim, A., T.W. Tee, H.S. Min and S. Nagalingam, 2011. Deposition and characterization of ZnS thin films using chemical bath deposition method in the presence of sodium tartrate as complexing agent. Pak. J. Sci. Ind. Res. Ser. A: Phy. Sci., 54: 1-5.
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  104. Kassim, A., T.W. Tee and H.S. Min, 2011. General Chemical Research. In: Issues in Chemistry and General Chemical Research, Acton, Q.A. (Ed.). Chapter 8, Scholarly Editions, Atlanta, GA., USA., ISBN: 978-1-4649-6334-6, pp: 1399.
  105. Kassim, A., S.M. Ho, W.T. Tan, K.S. Lim and S. Nagalingam, 2011. Morphological characterization of CuS thin films by atomic force microscopy. Res. J. Applied Sci. Eng. Technol., 3: 513-518.
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  106. Kassim, A., N. Razak and H.S. Min, 2011. Atomic force microscopy studies of zinc sulphide thin films. Int. J. Adv. Eng. Sci. Technol., 7: 169-172.
  107. Kassim, A., M.Y. Rosli and H.S. Min, 2011. UV-visible studies of chemical bath deposited NiSe thin films. Int. J. Chem. Res., 3: 21-26.
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  108. Kassim, A., H.S. Min, T.W. Tee, A. Shariff and N. Saravanan, 2011. Chemical bath deposition of ZnSe thin films: SEM and XRD characterization. Eur. J. Applied Sci., 3: 113-116.
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  109. Kassim, A., H.S. Min, T.W. Tee and N.C. Fei, 2011. Influence of triethanolamine on the chemical bath deposited NiS thin films. Am. J. Applied Sci., 8: 359-361.
  110. Kassim, A., H.S. Min, T. Tee and Y. Rosli, 2011. Preparation and characterization of chemical bath deposited NiSe thin films. Ozean J. Applied Sci., 4: 363-372.
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  111. Kassim, A., H.S. Min, M.J. Haron and S. Nagalingam, 2011. Preparation of thin films of copper sulfide by chemical bath deposition. Int. J. Pharm. Life Sci., 2: 1190-1194.
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  112. Kassim, A., H.S. Min, L.K. Siang and S. Nagalingam, 2011. Surface morphology of CuS thin films observed by atomic force microscopy. SQU J. Sci., 16: 24-33.
  113. Kassim, A., H.S. Min, L.K. Siang and S. Nagalingam, 2011. SEM, EDAX and UV-visible studies on the properties of Cu2S thin films. Chalcogenide Lett., 8: 405-410.
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  114. Kassim, A., H.S. Min, A. Shariff and M.J. Haron, 2011. The effect of the pH value on the growth and properties of chemical bath deposited SnS thin films. Res. J. Chem. Environ., 15: 45-48.
  115. Kassim, A., H.S. Min, A. Sharif, J. Haron and S. Nagalingam, 2011. Chemical bath deposition of SnS thin films: AFM, EDAX and UV-Visible characterization. Oriental J. Chem., 27: 1375-1381.
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  116. Kassim, A., H.S. Min and S. Nagalingam, 2011. Preparation of lead selenide thin films by chemical bath deposition method in the presence of complexing agent (tartaric acid). Turk. J. Sci. Technol., 6: 17-23.
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  117. Anuar, K., W.T. Tan, N. Saravanan and S.M. Ho, 2011. Influence of pH on the properties of chemical bath deposited Ni4S3 thin films. Bangladesh J. Scient. Ind. Res., 46: 243-246.
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  118. Anuar, K., S.M. Ho, T.W. Kelvin and N. Saravanan, 2011. Influence of pH on the morphology properties of ZnSe thin films studied by atomic force microscopy. Eur. J. Scient. Res., 66: 592-599.
  119. Kassim, A., W.T. Tan, S.M. Ho and N. Saravanan, 2010. Influence of pH on the structural and morphological properties of ZnS thin films. Anadolu Univ. J. Sci. Technol., 11: 17-22.
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  120. Kassim, A., W.T. Tan, D.K. Abdullah, M. Haron, S.M. Ho, S. Monohorn and S. Nagalingam, 2010. Preparation and characterization of PbSe thin films by chemical bath deposition. Jurnal Kimia, 4: 1-6.
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  121. Kassim, A., T.W. Tee, S. Nagalingam and H.S. Min, 2010. The effect of bath temperature on the chemical bath deposition of copper sulphide thin films. Jordan J. Chem., 5: 165-173.
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  122. Kassim, A., T.W. Tee, H.S. Min, S. Monohorn and S. Nagalingam, 2010. Effect of bath temperature on the chemical bath deposition of PbSe thin films. Kathmandu Univ. J. Sci. Eng. Technol., 6: 126-132.
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  123. Kassim, A., T.W. Tee, H.S. Min, A.H. Abdullah, A.H. Jusoh and S. Nagalingam, 2010. Effect of solution concentration on MnS2 thin films deposited in a chemical bath. Kasetsart J. (Nat. Sci.), 44: 446-453.
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  124. Kassim, A., T.W. Tee, D.K. Abdullah, A.M. Sharif, H.S. Min, G.S. Yong and S. Nagalingam, 2010. Preparation and characterization of iron sulphide thin films by chemical bath deposition method. Indonesian J. Chem., 10: 8-11.
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  125. Kassim, A., S.M. Ho, W.T. Tan and N. Saravanan, 2010. Composition, structure and photoelectrochemical characterization of electrodeposited Cu4SnS4 thin films. Oriental J. Chem., 26: 389-394.
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  126. Kassim, A., S.M. Ho, A.H. Abdullah and S. Nagalingam, 2010. XRD, AFM and UV-Vis optical studies of PbSe thin films produced by chemical bath deposition method. Trans. C: Chem. Chem. Eng., 17: 139-143.
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  127. Kassim, A., S. Nagalingam, Z. Kuang, A. Sharif, T.W. Tee and H.S. Min, 2010. Influence of complexing agent (Na2EDTA) on chemical bath deposited Cu4SnS4 thin films. Bull. Chem. Soc. Ethiop., 24: 259-266.
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  128. Kassim, A., S. Nagalingam, T.W. Tee, K.L. Koon and H.S. Min, 2010. Effect of pH value and electrolyte concentration on the copper sulphide thin films prepared by chemical bath deposition method. Gazi Univ. J. Sci., 23: 435-443.
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  129. Kassim, A., S. Nagalingam, T.W. Tee and H.S. Min, 2010. Effects of deposition period on the chemical bath deposited Cu4SnS4 thin films. Revista Sociedad Quimica Peru, 76: 54-60.
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  130. Kassim, A., S. Nagalingam, H.S. Min and N.C. Fei, 2010. Structural transformations in chemical bath deposited nickel sulphide thin films. Pac. J. Sci. Technol., 11: 441-445.
  131. Kassim, A., S. Nagalingam, H.S. Min and N. Karrim, 2010. XRD and AFM studies of ZnS thin films produced by electrodeposition method. Arabian J. Chem., 3: 243-249.
    CrossRef  |  Direct Link  |  
  132. Kassim, A., H.S.S. Min, L.Y. Yee and S. Nagalingam, 2010. Structural and morphological characterization of chemical bath deposition of FeS thin films in the presence of sodium tartrate as a complexing agent. Silpakorn Univ. Sci. Technol. J., 4: 36-42.
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  133. Kassim, A., H.S. Min, S. Monohorn and S. Nagalingam, 2010. Synthesis of PbSe thin film by chemical bath deposition and its characterization using XRD, SEM and UV-Vis spectrophotometer. Makara Seri Sains, 14: 117-120.
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  134. Kassim, A., H.S. Min, A.H. Abdullah, N. Karrim and S. Nagalingam, 2010. Influence of the deposition time on the structure and morphology of the ZnS thin films electrodeposited on indium tin oxide substrates. Digest J. Nanomater. Biostruct., 5: 975-980.
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  135. Kassim, A., H.S. Min, A. Shariff and S. Nagalingam, 2010. Influence of triethanolamine on the properties of chemical bath deposited nickel sulphide thin films. Jurnal Nanosains Nanoteknologi, 3: 22-24.
  136. Kassim, A., H.S. Min, A. Sharif and S. Nagalingam, 2010. X-ray diffraction and atomic force microscopy studies of chemical bath deposited FeS thin films. Studia Universitatis Babes-Bolyai Chemia, 55: 5-11.
  137. Kassim, A., A.H. Abdullah, H.S. Min and S. Nagalingam, 2010. Influence of deposition time on the properties of chemical bath deposited manganese sulfide thin films. Avances Quimica, 5: 141-145.
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  138. Kassim, A. and H.S. Min, 2010. Deposition and characterization of MnS thin films by chemical bath deposition method. Int. J. Chem. Res., 1: 1-5.
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  139. Anuar, K., W.T. Tan, S. Atan, Z. Kuang, M.J. Haron, S.M. Ho and N. Saravanan, 2010. Effects of electrolytes concentration on the chemically deposited Cu4SnS4 thin films. Asian J. Chem., 22: 222-232.
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  140. Anuar, K., W.T. Tan, N. Saravanan, L.K. Khor and S.M. Ho, 2010. Effects of deposition time on the chemical bath-deposited CuS thin films. J. Nepal Chem. Soc., 25: 2-8.
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  141. Anuar, K., W.T. Tan, M. Jelas, S.M. Ho, S.Y. Gwee and N. Saravanan, 2010. Effects of deposition period on the properties of FeS2 thin films by chemical bath deposition method. Thammasat Int. J. Sci. Technol., 15: 62-69.
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  142. Anuar, K., T.W. Tee, A.H. Abdullah, N. Saravanan and H.S. Min, 2010. Deposition and characterization of Cu4SnS4 thin films by chemical bath deposition method. Macedonian J. Chem. Chem. Eng., 29: 97-103.
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  143. Anuar, K., N. Saravanan, W.T. Tan, S.M. Ho and D. Teo, 2010. Chemical bath deposition of nickel sulphide (Ni4S3) thin films. Leonardo J. Sci., 16: 1-12.
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  144. Anuar, K., M. Jelas, M.Y. Rosli, W.T. Tan, H.A. Abdul, S.M. Ho and N. Saravanan, 2010. Chemical bath deposition of NiSe thin films from aqueous solutions. Kuwait J. Sci. Eng., 37: 63-73.
  145. Anuar, K., K. Zulkefly, S. Atan, W.T. Tan, S.M. Ho and N. Saravanan, 2010. Preparation and studies of chemically deposited Cu4SnS4 thin films in the presence of complexing agent Na2EDTA. Indian J. Eng. Mater. Sci., 17: 295-298.
  146. Anuar, K., K. Zulkefly, S. Atan, H. Jelas, W.T. Tan and S.M. Ho, 2010. Effects of deposition potential on Cu4SnS4 thin films prepared by electrodeposition technique. Arabian J. Sci. Eng., 35: 83-92.
  147. Anuar, K., H.A. Abdul, S.M. Ho and N. Saravanan, 2010. Effect of deposition time on surface topography of chemical bath deposited PbSe thin films observed by atomic force microscopy. Pac. J. Sci. Technol., 11: 399-403.
  148. Kassim, A., T.W. Tee, A.M. Sharif, D.K. Abdullah, J. Haron, H.S. Min and N. Saravanan, 2009. Influence of bath temperature and pH value on properties of chemically deposited Cu4SnS4 thin films. J. Chilean Chem. Soc., 54: 256-259.
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  149. Kassim, A., S. Nagalingam, T.E. Tee, A.M. Shariff, D. Kuang, M.J. Haron and S.M. Ho, 2009. Effects of pH value on the electrodeposition of Cu4SnS4 thin films. Analele Universitatii Bucuresti, 18: 59-64.
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  150. Anuar, K., W.T. Tan, N. Saravanan, S.M. Ho and S.Y. Gwee, 2009. Influence of pH values on chemical bath deposited FeS2 thin films. Pac. J. Sci. Technol., 10: 801-805.
  151. Anuar, K., W.T. Tan, A.H. Abdullah, H.M. Jelas, N. Saravanan, S.M. Ho and M. Yazid, 2009. Chemical bath deposition of NiSe thin films from alkaline solutions using triethanolamine as complexing agent. Oriental J. Chem., 25: 813-816.
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  152. Anuar, K., S.M. Ho, W.T. Tan, S. Atan, Z. Kuang, M.J. Haron and N. Saravanan, 2009. Effect of deposition period and bath temperature on the properties of electrodeposited Cu4SnS4 films. Solid State Sci. Technol., 17: 226-237.
  153. Anuar, K., N. Saravanan, W.T. Tan, S. Atan, Z. Kuang, M.J. Haron and S.M. Ho, 2009. Effect of deposition period and pH on chemical bath deposited Cu4SnS4 thin films. Philippine J. Sci., 138: 161-168.
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  154. Anuar, K., S.M. Ho, W.T. Tan, S. Atan, Z. Kuang, M.J. Haron and N. Saravanan, 2008. Effects of bath temperature on the electrodeposition of Cu4SnS4 thin films. J. Applied Sci. Res., 4: 1701-1707.
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  155. Anuar, K., S.M. Ho, W.T. Tan, S. Atan, K. Zulkefly, H. Jelas and N. Saravanan, 2008. Cathodic electrodeposition of chalcogenide thin films Cu4SnS4 for solar cells. CMU J. Nat. Sci., 7: 317-326.
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  156. Anuar, K., S.M. Ho, W.T. Tan, M.S. Atan, D. Kuang, H.M. Jelas and N. Saravanan, 2008. Effects of solution concentration on the properties of Cu4SnS4 thin films. Mater. Sci., 14: 101-105.
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  157. Anuar, K., W.T. Tan, M.S. Atan, K. Dzulkefly, S.M. Ho, H.M. Jelas and N. Saravanan, 2007. Cyclic voltammetry study of copper tin sulfide compounds. Pac. J. Sci. Technol., 8: 252-260.
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