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有机太阳电池由于质轻、价廉、柔性,受到人们的广泛关注.单个有机材料只能吸收部分太阳光,叠层结构的太阳电池将不同吸收带隙的有机材料通过中间层连接起来,既能充分吸收太阳光,又能提高太阳电池的开路电压或短路电流.本文综述了近年来有机共混结构叠层太阳电池的研究进展,介绍了各种叠层有机太阳电池的结构、原理及性能,阐述了国内外有机叠层太阳电池研究的现状及存在问题,为高性能有机太阳电池的研究提供有价值的参考. 相似文献
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为明确颗粒有机碳在土壤固碳中的作用机制,对比研究了不同有机培肥土壤颗粒有机碳的结构差异。以单施化肥处理为对照,选择了四种有机物料进行定位培肥试验,利用~(13) C NMR和红外光谱技术对比分析不同有机培肥对土壤颗粒有机碳结构的影响。结果表明:颗粒有机碳以脂肪碳和含氧基团为主,脂化度高于75%,含氧官能团含量高于50%;不同有机培肥对土壤颗粒有机碳结构的影响差异性显著,树叶培肥在提高颗粒有机碳芳香度的同时,亲水性也大幅度提高,比单施化肥处理(对照)提高了0.78%;短期内,牛粪、秸秆和树叶培肥均可提高土壤颗粒有机碳的芳香度,但从长远角度分析,牛粪和秸秆培肥更利于土壤颗粒有机碳的稳定,尤其是秸秆培肥,其颗粒有机碳的芳香度分别比对照和牛粪培肥高0.35%和0.11%,而亲水性远低于二者;红外光谱与核磁分析的结果基本一致,红外光谱可用于大量样品的颗粒有机碳结构初步筛选。 相似文献
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为明确颗粒有机碳在土壤固碳中的作用机制,对比研究了不同有机培肥土壤颗粒有机碳的结构差异。以单施化肥处理为对照,选择了四种有机物料进行定位培肥试验,利用13C NMR和红外光谱技术对比分析不同有机培肥对土壤颗粒有机碳结构的影响。结果表明:颗粒有机碳以脂肪碳和含氧基团为主,脂化度高于75%,含氧官能团含量高于50%;不同有机培肥对土壤颗粒有机碳结构的影响差异性显著,树叶培肥在提高颗粒有机碳芳香度的同时,亲水性也大幅度提高,比单施化肥处理(对照)提高了0.78%;短期内,牛粪、秸秆和树叶培肥均可提高土壤颗粒有机碳的芳香度,但从长远角度分析,牛粪和秸秆培肥更利于土壤颗粒有机碳的稳定,尤其是秸秆培肥,其颗粒有机碳的芳香度分别比对照和牛粪培肥高0.35%和0.11%,而亲水性远低于二者;红外光谱与核磁分析的结果基本一致,红外光谱可用于大量样品的颗粒有机碳结构初步筛选。 相似文献
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有机高分子光折变材料的研究进展 总被引:3,自引:0,他引:3
基于有机高分子材料独特的化学和物理性质,阐明了发展有机高分子光折变材料的重要意义。通过对有机高分子材料的光电导和电光效应的分析,讨论了有机高分子材料成为高性能光折变材料的可能性。着重介绍了有机高分子光折变材料的化学结构和光折变性能。同时,简单分析了有机高分子光折变材料的研究现状以及当前存在的一些问题。 相似文献
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有机激光器因其制备简单, 价格低廉和易于集成等优势, 一直以来备受科研工作者的关注. 与无机激光介质相比, 有机激光材料来源广泛, 并具有发射光谱宽, 吸收与发射截面积大等特性, 因而有很大的发展潜力. 本文从激光的基本原理出发, 对有机激光材料的种类、特性进行了归纳, 并总结了高效有机激光材料的普遍特征; 分类讨论了常见有机激光微腔的类型与特点, 对有机激光系统内增益与损耗之间的动态关系进行了探讨. 鉴于实现电抽运激光一直以来都是有机激光领域期待解决的难题, 本文重点讨论了当前电抽运有机激光的研究现状和发展瓶颈, 以及科研工作者们对此问题的不懈探索和已有的工作基础. 最后总结了光抽运有机激光近年来的总体进展, 未来的研究方向, 这对于读者拓展新的研究思路有很好的参考和借鉴意义. 相似文献
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Recent progress in organic spintronics is given an informative overview, covering spin injection, detection, and trans-port in organic spin valve devices, and the magnetic field effect in organic semiconductors (OSCs). In particular, we focus on our own recent work in spin injection and the organic magnetic field effect (OMFE). 相似文献
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LI WenBin SONG QunLiang SUN XiaoYu WANG MeiLiang WU HuanRong DING XunMin & HOU XiaoYuan Surface Physics Laboratory Fudan University Shanghai China 《中国科学:物理学 力学 天文学(英文版)》2010,(2)
This paper presents an overview of the recent progress of small molecule organic solar cells mainly based on the previous worksof our group. We will mainly focus on the interfacial processes in the cells. The dissociation of excitons at electrode/organic andorganic/organic interfaces can be directly observed by transient photovoltage measurements. A simple model including dissociationof excitons at the interface and drift of free carriers in the built-in field is proposed to explain the observed signals of ... 相似文献
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Organic spintronics focuses on utilizing the spin degree of freedom in organic materials because of the long spin relaxation time. The vertical organic spin valve (OSV) is a typical sample structure used to study the spin transport phenomena. However, the fabrication of high quality OSVs is difficult, which results in controversial experiment results and hence hinders the development of organic spintronics. In this work, we describe our recent study on the fabrication of typical vertical organic spin valves, La0.67Sr0.33MnO3 (LSMO)/Alq3/Co. The LSMO bottom electrodes are annealed to obtain an atomically smooth surface and improved magnetic properties. The top Co electrodes are deposited by an indirect deposition method to reduce the interfusion between Co and Alq3. The controlled fabrication process provides much better performance and sample yield of OSVs. 相似文献
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The purpose of this paper is to provide general information about basic physical processes involved in organic electroluminescence
and to present the main parameters and advantages of organic light emitting devices (OLEDs). 相似文献
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Organic phototransistors (OPTs), compared to traditional inorganic counterparts, have attracted a great deal of interest because of their inherent flexibility, light-weight, easy and low-cost fabrication, and are considered as potential candidates for next-generation wearable electronics. Currently, significant advances have been made in OPTs with the development of new organic semiconductors and optimization of device fabrication protocols. Among various types of OPTs, small molecule organic single crystal phototransistors (OSCPTs) standout because of their exciting features, such as long exciton diffusion length and high charge carrier mobility relative to organic thinfilm phototransistors. In this review, a brief introduction to device architectures, working mechanisms and figure of merits for OPTs is presented. We then overview recent approaches employed and achievements made for the development of OSCPTs. Finally, we spotlight potential future directions to tackle the existing challenges in this field and accelerate the advancement of OSCPTs towards practical applications. 相似文献
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Norbert Koch 《固体物理学:研究快报》2012,6(7):277-293
The function and efficiency of most organic electronic and opto‐electronic devices greatly depend on the electronic structure of the interfaces therein. Charge injection from electrical contacts into the organic semiconductor, charge extraction, or exciton dissociation at organic semiconductor heterojunctions are crucial processes that must be optimized for high device efficiency. Consequently, the energy levels at these interfaces must be matched to allow for optimal performance. The key mechanisms that determine the energy level alignment at organic/electrode and organic/organic interfaces are reviewed, and methods to adjust the levels at such interfaces are presented. (© 2012 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim) 相似文献
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提出了一种测量有机材料的磁化率各向异性的方法。原理是利用掺杂对丝状液晶磁场扭曲费雷德里克兹转变影响的现象,将待测有机材料作为掺杂物,采用光学相位延迟法测量掺杂丝状液晶磁场扭曲费雷德里克兹转变阈值和过程,从而获得待测有机材料的磁化率各向异性。通过实验测量,从原理和方法上验证了测量方法的可行性。测得有机材料磁化率各向异性的同时也为有机材料的表征提供了一种方法。测量方法适用于无固有磁矩的有机材料。 相似文献