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Integrated Carbon Nanotubes Electrodes in Microfluidic Chip via MWPCVD
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作者 王升高 王明洋 +5 位作者 余冬冬 张文波 邓晓清 杜宇 程莉莉 汪建华 《Plasma Science and Technology》 SCIE EI CAS CSCD 2010年第5期556-560,共5页
An on-chip electrochemical detector for microfluidic chips was described, based on integrated carbon nanotube (CNT) electrodes directly onto the chip substrate through microwave plasma chemical vapor deposition (MW... An on-chip electrochemical detector for microfluidic chips was described, based on integrated carbon nanotube (CNT) electrodes directly onto the chip substrate through microwave plasma chemical vapor deposition (MWPCVD). The attractive performance of the integrated CNT electrodes was demonstrated for the amperometric detection of sucrose, glucose and D-fructose. The integrated CNT electrodes showed stronger electrocatalytic activity than gold electrodes. 展开更多
关键词 microfluidic chip integrated carbon naotube electrodes microwave plasmachemical deposition amperometrie detection
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Isotope effects of plasma chemical carbon oxidation in a magnetic field
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作者 Vyacheslav Fedorovich Myshkin Valeriy Alekseevich Khan +1 位作者 Dmitriy Aleksandrovich Izhoykin Ivan Alekceevich Ushakov 《Natural Science》 2013年第1期57-61,共5页
The influence of different factors on the plasma chemical reactions is widely studied today. However, insufficient consideration is given to the research of paramagnetic phenomena which takes place in plasma systems. ... The influence of different factors on the plasma chemical reactions is widely studied today. However, insufficient consideration is given to the research of paramagnetic phenomena which takes place in plasma systems. The results of modeling the process of redistribution carbon isotopes between different phases while oxidizing it in high-frequency low-temperature plasma in an external magnetic field are shown in the article. The equilibrium concentrations of components involved in the oxidation process in a plasma system are defined. A principle possibility of isotope-selective plasma chemical reactions in a magnetic field was experimentally determined. The increase of concentration of 13C in the gas phase up to 1.3 times relative to natural abundance was obtained. It was found that the content of the carbon heavy isotope in the gas phase depends on the magnetic field action area. The best results were achieved with the combination of magnetic field impact area and the priority area of the appearance of plasma chemical reactions products. 展开更多
关键词 HIGH-FREQUENCY DISCHARGE LOW-TEMPERATURE PLASMA Carbon Dioxide Magnetic Field plasmachemical Reaction ISOTOPE Effects
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Jet Plasma-Chemical Reactor for the Conversion of Methane: the Use of Clustering
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作者 A. E. Zarvin, N. G. Korobeishchikov M. D. Khodakov V. V. Kalyada 《Advances in Materials Physics and Chemistry》 2012年第4期146-149,共4页
The research results of processes proceeding in supersonic jets of light hydrocarbons, activated by an electron beam are presented. It is shown, that condensation suppressed at activation by electrons in the initial s... The research results of processes proceeding in supersonic jets of light hydrocarbons, activated by an electron beam are presented. It is shown, that condensation suppressed at activation by electrons in the initial stage of condensation. The developed condensation conditions mode leads to increasing of a part of heavy corpuscles in activated stream and not only owing to stimulation of condensation but because of formation of heavy hydrocarbonic molecules. 展开更多
关键词 CONVERSION of METHANE GTL-Production Engineering Clusters a Supersonic JET plasmachemical REACTIONS GAS Phase REACTIONS an Electron Beam a GAS Discharge
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