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基于可调控多肽纳米管和石墨烯复合纳米结构的光吸收催化平台
  • ISSN号:1000-3290
  • 期刊名称:《物理学报》
  • 时间:0
  • 分类:TQ127.11[化学工程—无机化工]
  • 作者机构:[1]人工微结构科学与技术协同创新中心、固体微结构国家实验室,南京大学物理学院,南京210093
  • 相关基金:国家重点基础研究发展计划(973计划)(批准号:2013CB834100)和国家自然科学基金(批准号:11334004,91127026)资助的课题.
中文摘要:

近年来,自组装纳米结构因为其容易制备、稳定、环保以及与各种功能基团、粒子等的多样结合能力吸引了科学家们的目光,成为人们研究的热点课题,在光电池、光催化、水凝胶、药物缓释等方面的实验科学领域得到了广泛的应用.尤其是光催化方面,自组装结构的重复性为激子的传递创造了比较良好的条件,成为众多激子传递平台中的佼佼者.本文报道了一种以苯丙氨酸二肽纳米管和羧基石墨烯为基础的自组装光吸收催化平台,对其结构进行研究,并使用该体系进行了烟酰胺腺嘌呤二核苷酸到它的还原态的催化实验.该体系的微观结构由纳米管和石墨烯膜复合而成,羧基石墨烯的存在能够降低纳米管直径,实现纳米管的形态操控,石墨烯与多肽纳米管复合纳米结构的存在实现了多通道协同激子传递,降低了激子传递的距离,极大增强了催化中心对于激子的接受和使用效率.在复合了光敏剂和催化中心之后,该体系具有较高的稳定性,均一的分散性,很强的光能吸收和转化能力等性质.对于从NADP+往NADPH转变的催化实验表明,该体系有较高的反应速率和催化效率,并且比两种单一结构催化平台效果之和更好,实现了一加一大于二的效应,展现了复合纳米结构光吸收催化平台的巨大潜力和广阔应用前景.

英文摘要:

Self-assembly is the way that is used by Mother Nature to create complex materials of hierarchical shapes and diverse functionalities. The photosynthesis apparatus of plant is an example of such complex materials that can direct convert the sunlight energy into chemical energy. Inspired by this, many artificial photosynthesis systems have been successfully engineered. However, most of these systems were based on only one type of simple nanostructure, such as nanosphere or nanotube. The charge separation and exciton transfer in such systems may be further improved by combining multiple nano-structures. Here, we report a novel photo catalysis system based on composite nanostructures of controllable peptide nanotubes and graphene. We use the mixture of diphenylalanine (FF) and carboxyl graphene for the photo catalysis because they are stable under different solvent conditions and highly conductive, which can provide more paths for exciton transfer. Moreover, the diameters of the peptide nanotubes become thinner in the presence of carboxyl graphene~ leading to a more uniformly distributed system than simply using the peptide nanotubes alone. The FF peptide nanotubes can connect with the carbonyl graphene (CG) to form the composite nanostructures because of the n-~ stacking interaction between benzene rings of FF and conjugated ~ bond of CG. The composite nanostructures of controllable peptide nanotubes and graphene provide more transmission channels for the excitions since they can travel on the nanotubes, CG or the compound of the both. We also demonstrate that when the photo- harvesting ruthenium complex and catalytic platinum nanoparticles are deposited on the systerrl, the nicotinamide adenine dinucleotide (NADP+) can reduce to NADPH. The catalytic efficiency and rate are much higher than thaose of other artificial photosynthesis systems reported in the literature. Surprisingly, we find that the catalytic efficiency of the combined system is better than the sum of separated systems with only FF nano

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期刊信息
  • 《物理学报》
  • 北大核心期刊(2011版)
  • 主管单位:中国科学院
  • 主办单位:中国物理学会 中国科学院物理研究所
  • 主编:欧阳钟灿
  • 地址:北京603信箱(中国科学院物理研究所)
  • 邮编:100190
  • 邮箱:apsoffice@iphy.ac.cn
  • 电话:010-82649026
  • 国际标准刊号:ISSN:1000-3290
  • 国内统一刊号:ISSN:11-1958/O4
  • 邮发代号:2-425
  • 获奖情况:
  • 1999年首届国家期刊奖,2000年中科院优秀期刊特等奖,2001年科技期刊最高方阵队双高期刊居中国期刊第12位
  • 国内外数据库收录:
  • 美国化学文摘(网络版),荷兰文摘与引文数据库,美国工程索引,美国科学引文索引(扩展库),英国科学文摘数据库,日本日本科学技术振兴机构数据库,中国中国科技核心期刊,中国北大核心期刊(2004版),中国北大核心期刊(2008版),中国北大核心期刊(2011版),中国北大核心期刊(2014版),中国北大核心期刊(2000版)
  • 被引量:49876