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ID:37092982
大小:2.93 MB
页数:57页
时间:2019-05-17
《有单分子转子填充的酞菁钴(CoPc)-空缺阵列》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、单位代码10635学号112015315001031硕士学位论文有单分子转子填充的酞菁钴(CoPc)-空缺阵列论文作者:谢正波指导教师:王俊忠教授学科专业:凝聚态物理研究方向:表面与界面物理提交论文日期:2018年4月论文答辩日期:2018年6月学位授予单位:西南大学中国重庆2018年6月OrderedarrayofCoPc-vacanciesfilledwithsingle-moleculerotors(M.S.Dissertation)byZhengBoXieAdvisor:Prof.JunzhongWangSchoo
2、lofPhysicalScience﹠TechnologySouthwestUniversityChongqingJune2018目录摘要..................................................................................................................................................IAbstract.........................................
3、..................................................................................................III第一章引言.................................................................................................................................11.1纳米科技与纳米材料简介...............
4、..............................................................................11.2低维纳米材料的制备及其表征技术.............................................................................31.3分子自组装与分子团簇.............................................................................
5、....................41.4薄膜生长理论................................................................................................................51.5应力与单分子转子.........................................................................................................61.5.1
6、应力..............................................................................................................................61.5.2分子转子.....................................................................................................................71.6本论文的结构
7、安排.........................................................................................................7第二章实验技术及其原理...........................................................................................................82.1超真空技术..............................
8、......................................................................................82.1.1超高真空测量...............................................
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