MICROWIRES

作品数:30被引量:39H指数:3
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相关领域:一般工业技术更多>>
相关作者:蔡雄辉姜晓晔翟爱霞范国枝孙剑飞更多>>
相关机构:哈尔滨工业大学武汉工业学院更多>>
相关期刊:《Journal of Wuhan University of Technology(Materials Science)》《Science China Chemistry》《Chinese Physics B》《Progress in Natural Science:Materials International》更多>>
相关基金:国家自然科学基金中国博士后科学基金国家高技术研究发展计划国家重点基础研究发展计划更多>>
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Fabrication of crystalline selenium microwire
《Chinese Physics B》2017年第4期472-475,共4页彭帅 唐国武 孙敏 刘旺旺 单秀杰 钱奇 陈东丹 张勤远 杨中民 
Project supported by the National Natural Science Foundation for Distinguished Young Scientists,China(Grant No.61325024);the High-Level Personnel Special Support Program of Guangdong Province,China(Grant No.2014TX01C087);the Fundamental Research Funds for the Central Universities,China(Grant No.2015ZP019);the National High Technology and Development Program of China(Grant Nos.2013AA031502 and 2014AA041902);the National Natural Science Foundation of China(Grant Nos.51472088,61535014,and 51302086);the Fund of Guangdong Provincial Cooperation of Producing,Studying and Researching,China(Grant No.2012B091100140)
A method of fabricating selenium(Se) microwire is demonstrated.A multimaterial fiber with amorphous selenium(a-Se) core and multicomponent phosphate glass cladding is drawn by using a conventional optical fiber dr...
关键词:selenium semiconductor crystalline microwires optical fiber technology photoconductivity ma-terials 
Nanodots and microwires of ZrO_2 grown on LaAlO_3 by photo-assisted metal–organic chemical vapor deposition
《Chinese Physics B》2016年第2期510-516,共7页郭峰 汪薪生 庄仕伟 李国兴 张宝林 周本初 
Project supported by the National Natural Science Foundation of China(Grant No.51002063);the International Science and Technology Cooperation Program of Science and Technology Bureau of Changchun City,China(Grant No.12ZX68)
ZrO_2 nanodots are successfully prepared on LaAlO_3(LAO)(100) substrates by photo-assisted metal-organic chemical vapor deposition(MOCVD). It is indicated that the sizes and densities of ZrO_2 nanodots are contr...
关键词:ZRO2 photo-assisted MOCVD NANODOTS MICROWIRES 
Investigations of the optical properties of Si surface with microwires for solar cell applications
《Chinese Physics B》2016年第2期528-532,共5页郦莉 吴仕良 虞栋 王伟 刘文超 吴小山 张凤鸣 
Project supported by the National Natural Science Foundation of China(Grant Nos.U1332205,11274153,11204124,and 11404091)
Combined with the rough textures which are usually used for fabricating the planar solar cells, textured-microwire(MW) structures(there are MW textures on the tops of MWs) are fabricated. Both simulative and exper...
关键词:MICROSTRUCTURE REFLECTIVITY silicon solar energy 
Photoluminescence spectroscopy of defects in ZnO nano/microwires
《Chinese Physics B》2011年第6期458-461,共4页孙香冰 冯林 焦现炜 
Photoluminescence spectroscopy is used to study defects found in single ZnO nano/microwires at 90K. The defect, acting as binding site for bound exciton (BX) transition, is represented by BF, the fractional intensit...
关键词:ZNO PHOTOLUMINESCENCE DEFECT 
Annealing effects on the microwave permittivity and permeability properties of Fe_(79)Si_(16)B_5 microwires and their microwave absorption performances被引量:3
《Chinese Physics B》2009年第3期1261-1265,共5页韩满贵 欧雨 梁迪飞 邓龙江 
supported by the National Natural Science Foundation of China (Grant No 60701016);the Science Foundation for Young Faculties of UESTC (Grant Nos L08010301JX0618 and L08010301JX05013)
This paper reports that amorphous magnetic microwires (Fe79Si16Bs) have been fabricated by a melt-extraction technique and have been annealed at 600℃ and 750℃ respectively. Differential scanning calorimeter measur...
关键词:amorphous magnetic microwires magnetic permeability PERMITTIVITY microwave absorber 
Effect of annealing treatments on the microwave electromagnetic properties of amorphous FeCuNbSiB microwires被引量:1
《Chinese Physics B》2007年第2期542-547,共6页梁迪飞 韩满贵 鄢波 邓龙江 
The amorphous FeCuNbSiB microwires are fabricated by using the melt extraction method and annealed separately at temperatures T = 573, 673, 723 and 773K for lh. The effect of annealing treatment on the microwaw electr...
关键词:amorphous alloys PERMEABILITY PERMITTIVITY MICROWIRES 
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