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Original Articles

Generation of Charged Nanoparticles during Synthesis of ZnO Nanowires by Carbothermal Reduction

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Pages 120-125 | Received 19 May 2008, Accepted 23 Sep 2008, Published online: 14 Jan 2009

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Ju-Seop Hong, Chan-Soo Kim, Seung-Wan Yoo, Seong-Han Park, Nong-Moon Hwang, Hoo-Mi Choi, Dong-Bin Kim & Tae-Sung Kim. (2013) In-Situ Measurements of Charged Nanoparticles Generated During Hot Wire Chemical Vapor Deposition of Silicon Using Particle Beam Mass Spectrometer. Aerosol Science and Technology 47:1, pages 46-51.
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Sung-Soo Lee, Chan-Soo Kim & Nong-Moon Hwang. (2012) Generation of Charged Nanoparticles During the Synthesis of GaN Nanostructures by Atmospheric-Pressure Chemical Vapor Deposition. Aerosol Science and Technology 46:10, pages 1100-1108.
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Articles from other publishers (22)

Min Gyo Byun, Jeong Woo Yang, Jong Hwan Park, Nong Moon Hwang, Jinwoo Park & Byung Deok Yu. (2022) Effects of Electrostatic Interaction on the Formation of a Particle Depletion Zone by Charged Nanoparticles during the Chemical Vapor Deposition of Si Processes. Crystal Growth & Design 22:4, pages 2490-2498.
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Du-Yun Kim, Ji-Hye Kwon, Gil-Su Jang & Nong-Moon Hwang. (2021) Effect of Pressure on the Film Deposition during RF Magnetron Sputtering Considering Charged Nanoparticles. Coatings 11:2, pages 132.
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Ji-Hye Kwon, Du-Yun Kim & Nong-Moon Hwang. (2020) Generation of Charged Ti Nanoparticles and Their Deposition Behavior with a Substrate Bias during RF Magnetron Sputtering. Coatings 10:5, pages 443.
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Sandesh Y. Sawant, Moo Hwan Cho, Misook Kang & Thi Hiep Han. (2019) Carbothermal process-derived porous N-doped carbon for flexible energy storage: Influence of carbon surface area and conductivity. Chemical Engineering Journal 378, pages 122158.
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Rungroj Tuayjaroen, Tanattha Rattana & Tula Jutarosaga. (2019) Oxygen partial pressure-dependent growth mechanism of low-dimensional zinc oxide on indium tin oxide glass. Materials Science in Semiconductor Processing 101, pages 116-123.
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Da-Seul Kim & Nong-Moon Hwang. (2018) Synthesis of nanostructures using charged nanoparticles spontaneously generated in the gas phase during chemical vapor deposition. Journal of Physics D: Applied Physics 51:46, pages 463002.
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Rungroj Tuayjaroen & Tula Jutarosaga. (2017) The influence of oxygen partial pressure on the shape transition of ZnO microstructure by thermal evaporation. Thin Solid Films 631, pages 213-218.
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Tanumoy Debnath, Sukhen Das, Dipankar Das & Soumyaditya Sutradhar. (2017) Optical, magnetic and dielectric properties of ZnO:Y nanoparticles synthesized by hydrothermal method. Journal of Alloys and Compounds 696, pages 670-681.
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Sang-hoon Lee, Jae-soo Jung, Sung-soo Lee, Sung-bo Lee & Nong-moon Hwang. (2016) Low temperature deposition of polycrystalline silicon thin films on a flexible polymer substrate by hot wire chemical vapor deposition. Journal of Crystal Growth 453, pages 151-157.
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Nong Moon HwangNong Moon Hwang. 2016. Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes. Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes 193 222 .
Nong Moon HwangNong Moon Hwang. 2016. Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes. Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes 261 289 .
Seong-Han Park, Jin-Woo Park, Seung-Min Yang, Kwang-Ho Kim & Nong-Moon Hwang. (2015) Effect of Electric Bias on the Deposition Behavior of ZnO Nanostructures in the Chemical Vapor Deposition Process. The Journal of Physical Chemistry C 119:44, pages 25047-25052.
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Seung-Wan Yoo, Ju-Seop Hong, Sung-Soo Lee, Chan-Soo Kim, Tae-Sung Kim & Nong-Moon Hwang. (2014) Nonclassical Crystallization in Low-Temperature Deposition of Crystalline Silicon by Hot-Wire Chemical Vapor Deposition. Crystal Growth & Design 14:12, pages 6239-6247.
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Woong-Kyu Youn, Sung-Soo Lee, Jae-Young Lee, Chan-Soo Kim, Nong-Moon Hwang & Sumio Iijima. (2014) Comparison of the Deposition Behavior of Charged Silicon Nanoparticles between Floating and Grounded Substrates. The Journal of Physical Chemistry C 118:22, pages 11946-11953.
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Ju-Seop Hong, Chan-Soo Kim, Seung-Wan Yoo, Seong-Han Park, Sung-Soo Lee, Nong-Moon Hwang, Hoo-Mi Choi, Dong-Bin Kim & Tae-Sung Kim. (2013) Real time measurements of charged gas phase nuclei during the deposition of silicon thin films by hot wire chemical vapor deposition. Current Applied Physics 13, pages S45-S49.
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Woong-Kyu Youn, Chan-Soo Kim, Jae-Young Lee, Sung-Soo Lee & Nong-Moon Hwang. (2012) Generation of Charged Nanoparticles and Their Deposition Behavior under Alternating Electric Bias during Chemical Vapor Deposition of Silicon. The Journal of Physical Chemistry C 116:47, pages 25157-25163.
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Nong-Moon Hwang & Dong-Kwon Lee. (2010) Charged nanoparticles in thin film and nanostructure growth by chemical vapour deposition. Journal of Physics D: Applied Physics 43:48, pages 483001.
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Soon-Young Park, Shin-Jae You, Chan-Soo Kim & Nong-Moon Hwang. (2010) Comparison of charge generation from hot wires between AC and DC power supply and its effect on deposition behavior during hot-wire chemical vapor deposition of silicon. Journal of Crystal Growth 312:16-17, pages 2459-2464.
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Chan-Soo Kim, Woong-Kyu Youn & Nong-Moon Hwang. (2010) Generation of charged nanoparticles and their deposition during the synthesis of silicon thin films by chemical vapor deposition. Journal of Applied Physics 108:1.
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Chan-Soo Kim, Il-Jo Kwak, Kyoung-Jin Choi, Jae-Gwan Park & Nong-Moon Hwang. (2010) Generation of Charged Nanoparticles During the Synthesis of Silicon Nanowires by Chemical Vapor Deposition. The Journal of Physical Chemistry C 114:8, pages 3390-3395.
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Soon Young Park, Seung Min Yang, Chan Soo Kim & Nong Moon Hwang. (2009) Effect of Bias Applied to Hot Wires on Generation of Positive and Negative Charges during Silicon Hot-Wire Chemical Vapor Deposition. The Journal of Physical Chemistry C 113:39, pages 17011-17017.
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Chan-Soo Kim, Yung-Bin Chung, Woong-Kyu Youn & Nong-Moon Hwang. (2009) Generation of charged nanoparticles during the synthesis of carbon nanotubes by chemical vapor deposition. Carbon 47:10, pages 2511-2518.
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