首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Carbon-encapsulated CdSe quantum dot inorganic hybrid nanobelts for high performance photoelectronic devices based on the efficient separation and transfer of photoinduced holes
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Carbon-encapsulated CdSe quantum dot inorganic hybrid nanobelts for high performance photoelectronic devices based on the efficient separation and transfer of photoinduced holes

机译:基于光致空穴的有效分离和转移的高性能光电器件的碳封装CdSe量子点无机杂化纳米带

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摘要

We developed a facile method of combustion synthesis followed by a selenylation process to synthesize carbon-encapsulated CdSe hybrid nanobelts. In the nanohybrids, hexagonal-wurtzite-structured CdSe quantum dots (QDs) are formed in situ and embedded uniformly in the carbon nanobelt (CNB) matrix, resulting in the formation of an analogous p-i-n junction along the radius of the QDs due to the appearance of an inversion layer on the QD surfaces, which favors the separation of photoexcited electron-hole pairs by built-in electric field. Electrons accumulate in the QD core, while holes migrate to the QD surface and then quickly transfer to the CNB matrix. Additionally, the nanohybrids can enhance significantly the absorption of the whole energy range of visible light. The nanohybrids can show p-type conductivity with hole mobility as high as 1.4 x 10(4) cm(2) V-1 s(-1), and, furthermore, the single nanohybrid-based devices not only show excellent photodetection performance at a certain bias, but also show photovoltaic-based self-powered photodetection performance at zero bias upon illuminating one end electrode of the devices, pointing a way to the development of novel photoelectronic materials and devices for energy applications.
机译:我们开发了一种简便的燃烧合成方法,然后进行硒化反应工艺来合成碳封装的CdSe杂化纳米带。在纳米杂化物中,六方纤锌矿结构的CdSe量子点(QDs)原位形成并均匀地嵌入碳纳米带(CNB)基质中,由于外观,沿QDs半径形成了类似的销结QD表面上的反型层的形成,有利于通过内置电场分离光激发的电子-空穴对。电子聚集在QD核心中,而空穴迁移到QD表面,然后迅速转移到CNB矩阵中。另外,纳米杂化物可以显着增强可见光整个能量范围的吸收。纳米杂化物可以显示p型电导率,空穴迁移率高达1.4 x 10(4)cm(2)V-1 s(-1),而且,基于纳米杂化物的单个器件不仅在以下条件下表现出出色的光电检测性能具有一定的偏压,但在照亮器件的一个端电极时,在零偏压下也显示了基于光伏的自供电光电检测性能,这为开发用于能源应用的新型光电材料和器件指明了道路。

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