国家自然科学基金(51202138)

作品数:4被引量:1H指数:1
导出分析报告
相关作者:施利毅任鑫袁帅郝丽娜赵尹更多>>
相关机构:上海大学更多>>
相关期刊:《Advances in Manufacturing》《微纳电子技术》《功能材料》《Chinese Chemical Letters》更多>>
相关主题:MOIETYCOPPER-CATALYZEDENTRIESESTERSCYCLOHEXANE更多>>
相关领域:一般工业技术理学电气工程更多>>
-

检索结果分析

结果分析中...
条 记 录,以下是1-4
视图:
排序:
Expedient copper-catalyzed borylation reactions using amino acids as ligands被引量:1
《Chinese Chemical Letters》2015年第3期373-376,共4页Meng-Yan Liu Shi-Bin Hong Wei Zhang Wei Deng 
support from the Eastern Scholar,Shanghai Pujiang Program,Key Subject of Shanghai Municipal Education Commission,Natural Science Foundation of Shanghai (No.12ZR1410500);NSFC (Nos.21102088,51202138 and 21174081)
Amino acids were found to be as good ligands for copper-catalyzed borylation reactions of primary and secondary alkyl halides,and the B2pin2 acted as bi-boron source for borylation.The high reaction efficiency and mil...
关键词:catalyzed alkyl esters boron reagent halide entries moiety aromatic cyclohexane 
退火处理对ZnO纳米棒阵列的性能影响(英文)
《微纳电子技术》2014年第12期753-759,764,共8页任鑫 刘美玉 袁帅 曹娇 施利毅 
Chinese National Natural Science Foundation(51202138,51202140);Natural Science Foundation of Shanghai(12ZR1410500);Shanghai University Innovation Fund(2012-120417)
通过电沉积在ITO基底上制备了大规模ZnO纳米棒阵列。对ZnO纳米棒进行不同温度下的退火处理,然后通过旋转涂覆工艺将聚3-己基噻吩与[6,6]-苯基-C61丁酸甲酯(P3HT∶PCBM)的混合物沉积在纳米棒上组装成杂化太阳电池。应用扫描电子显微镜、...
关键词:P3HT PCBM ZNO纳米棒 杂化太阳电池 电沉积 退火处理 
TiO_2纳米颗粒/纳米棒阵列复合薄膜的制备及其光电催化性能
《功能材料》2014年第6期79-82,共4页郝丽娜 于乐 赵尹 王竹仪 任鑫 张美红 施利毅 袁帅 
国家自然科学基金资助项目(51202138);上海市科委自然科学基金资助项目(12ZR1410500);上海市第三期重点学科建设资助项目(S30107);上海市教委第五期重点学科建设资助项目(J50102)
以金属钛箔为钛源,采用双氧水和盐酸体系,通过水热法制备合成TiO2纳米棒阵列薄膜,并通过调节双氧水和盐酸的用量,调控TiO2纳米棒阵列薄膜的微观形貌和物相构成。结合溶剂挥发自组装法将TiO2纳米颗粒引入纳米棒阵列中,得到复合型TiO2光...
关键词:TiO2纳米棒阵列 TIO2纳米颗粒 水热法 光电催化 
Influence of defect density on the ZnO nanostructures of dye-sensitized solar cells
《Advances in Manufacturing》2013年第4期340-345,共6页Yan-Yan Lou Shuai Yuan Yin Zhao Zhu-Yi Wang Li-Yi Shi 
the supports of Shanghai Leading Academic Discipline Project(Grant No.S30107);National Natural Science Foundation of China(Grant No.51202138);Natural Science Foundation of Shanghai(Grant No.12ZR1410500);Research&Innovation Projects of Shanghai Education Commission(Grant No.11YZ22);Project of Shanghai Environment Condition(Grant No.10dz2252300);Science Foundation for Excellent Youth Scholars of Shanghai University;Science Foundation for Excellent Youth Scholars of Universities(Shanghai)
The relationship between bilayer nanostructure, defect density and dye-sensitized solar cell (DSCC) per- formances was investigated. By adjusting bilayer nano- structures, defect density of ZnO nanodendrite-nanorods...
关键词:ZnO BILAYER Nanostructure -Nanodendrite-nanorods defect ~ Dye-sensitized solarcells 
检索报告 对象比较 聚类工具 使用帮助 返回顶部