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Seed Free Growth of Aligned ZnO Nanowire Arrays on AZO Substrate 被引量:1
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作者 刘利清 CAO Guangxia HONG Kunquan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第6期1372-1375,共4页
In the absence of commonly used seed layer, we can still successfully synthesized aligned ZnO nanowire arrays by the hydrothermal method. By using aluminum-doped zinc oxide(AZO) glass as a substrate, high-density and ... In the absence of commonly used seed layer, we can still successfully synthesized aligned ZnO nanowire arrays by the hydrothermal method. By using aluminum-doped zinc oxide(AZO) glass as a substrate, high-density and vertically aligned ZnO nanowires were synthesized directly on the substrate in the absence of the ZnO seed layer. The current-voltage curve indicated that the sample grown on AZO glass substrate in the absence of seed layer possesses better conductivity than that synthesized on FTO glass substrate with ZnO seed layer. Thus, a simplified, seed-free and low-cost experimental protocol was reported here for large-scale production of high quality ZnO nanowire arrays with promoted conductivity. 展开更多
关键词 zno nanowire arrays seed layer free AZO substrate CONDUCTIVITY
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Study of Shifted UV Emission Peak of ZnO Nanowire Arrays
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作者 刘利清 LI Yongtao +2 位作者 HE Xuemin ZHANG Hongguang SHEN Jianping 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2022年第6期1048-1050,共3页
We have obtained vertically aligned ZnO nanowire arrays synthesized by microwave-assisted heating method with different growth time.From the room-temperature PL measurement,the strong deep-level emission and weak near... We have obtained vertically aligned ZnO nanowire arrays synthesized by microwave-assisted heating method with different growth time.From the room-temperature PL measurement,the strong deep-level emission and weak near band edge(NBE)emission can be seen.The deep-level emissions became weaker and deep-level emissions became stronger when the samples were annealed at 300℃for 30 min,meanwhile,the NBE emission peaks get red-shifted with growth time,and the longer the growth time,the more the peak shifting.This phenomenon can be attributed that the diameter of ZnO nanowires increases with growth time.This PL emission phenomenon is important in research of optoelectronic application. 展开更多
关键词 zno nanowire arrays photoluminescence property red shift different growth time
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Effect of Polyethyleneimine Assisting the Growth of Eu-doped ZnO Nanowire Arrays in Mannich Reaction
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作者 黎晓 甘孟瑜 +2 位作者 杨燕 马利 王辉辉 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2017年第10期1656-1666,共11页
In study on the growth reaction mechanism of Eu-doped ZnO nanowire(NW), the intermedium of reaction is characterized by measures such as FTIR. Besides, the influences of polyethyleneimine(PEI) on morphology, struc... In study on the growth reaction mechanism of Eu-doped ZnO nanowire(NW), the intermedium of reaction is characterized by measures such as FTIR. Besides, the influences of polyethyleneimine(PEI) on morphology, structure and photoelectric property of NW are observed by SEM, TEM, XRD, UV-vis and PL spectrum. According to the result, it manifests that Eu-doped ZnO NW array growth response experiences six mutually associated reaction processes in PEI-HMTA system:(a) chelation reaction of PEI and Zn^2+ & Eu^3+;(b) protonation reaction of PEI and NH_3;(c) decomposition reaction of hexamethylenetetramine(HMTA);(d) Mannich reaction of HCHO and PEI;(e) formation of precursor of Eu-doped ZnO;(f) dehydration condensation of Eu-doped ZnO precursors, further forming a doped ZnO NW array. Among them, PEI is the key factor of the whole doping growth reaction process. It both plays a role in modifying the growth of ZnO NW and makes it become longer and thinner. In the meantime, it also facilitates doping of Eu and enables ZnO NW to capture more photoelectrons and higher transmission rate, which is critical to improve photovoltaic performance of optoelectronic devices. 展开更多
关键词 polyethyleneimine Eu-doped zno nanowire arrays mannich reaction
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Robust Optimization of the Output Voltage of Nanogenerators by Statistical Design of Experiments 被引量:3
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作者 Jinhui Song Huizhi Xie +3 位作者 Wenzhuo Wu V.Roshan Joseph C.F.Jeff Wu Zhong Lin Wang 《Nano Research》 SCIE EI CSCD 2010年第9期613-619,共7页
Nanogenerators were first demonstrated by deflecting aligned ZnO nanowires using a conductive atomic force microscopy(AFM)tip.The output of a nanogenerator is affected by three parameters:tip normal force,tip scanning... Nanogenerators were first demonstrated by deflecting aligned ZnO nanowires using a conductive atomic force microscopy(AFM)tip.The output of a nanogenerator is affected by three parameters:tip normal force,tip scanning speed,and tip abrasion.In this work,systematic experimental studies have been carried out to examine the combined effects of these three parameters on the output,using statistical design of experiments.A statistical model has been built to analyze the data and predict the optimal parameter settings.For an AFM tip of cone angle 70°coated with Pt,and ZnO nanowires with a diameter of 50 nm and lengths of 600 nm to 1μm,the optimized parameters for the nanogenerator were found to be a normal force of 137 nN and scanning speed of 40μm/s,rather than the conventional settings of 120 nN for the normal force and 30μm/s for the scanning speed.A nanogenerator with the optimized settings has three times the average output voltage of one with the conventional settings. 展开更多
关键词 zno nanowire arrays robust parameter design NANOGENERATOR piezoelectric properties
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