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Nanoparticles with logic and numeracy: towards 'computer-on-a-particle' optoelectronic devices

机译:具有逻辑和计算能力的纳米粒子:面向“粒子上的计算机”光电设备

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The review focuses on semiconductor nanoparticles and hybrid materials obtained by immobilisation of various molecular species on nanoparticulate semiconductors. These materials constitute unique systems combining collective properties of solids with structural diversity of molecules which show distinctive photoelectrochemical properties. Theoretical models of electronic interactions between molecules and semiconductor surfaces have been presented. Additionally, the review summarises the idea of small particles that can work as electronic devices. These devices are able to sense the environment and communicate with other devices and with the user. The devices are based on surface modified wide-band gap semiconductors and the photoelectrochemical photocurrent switching effect. This effect has created a new platform for novel chemical switches, logic gates and other information processing devices. The mechanism of photocurrent switching is discussed with respect to the type of surface complex-support interaction. Photoelectrochemical properties of multicomponent photoelectrodes based on wide band gap nanocrystaline semiconductors modified with various molecules were investigated. The review presents some examples of hybrid materials working as logic devices, including reconfigurable ones and simple arithmetic systems together with mechanistic problems related to nanoscale information processing.
机译:综述集中在通过将各种分子种类固定在纳米颗粒半导体上获得的半导体纳米颗粒和杂化材料。这些材料构成了独特的系统,结合了固体的集体特性与分子的结构多样性,这些分子表现出独特的光电化学特性。已经提出了分子与半导体表面之间电子相互作用的理论模型。此外,该评论总结了可用作电子设备的小颗粒的想法。这些设备能够感知环境并与其他设备以及与用户通信。这些器件基于表面修饰的宽带隙半导体和光电化学光电流开关效应。这种效果为新型化学开关,逻辑门和其他信息处理设备创建了一个新平台。关于表面复合物-载体相互作用的类型,讨论了光电流转换的机理。研究了基于多种分子修饰的宽带隙纳米晶半导体的多组分光电极的光电性能。这篇综述提出了一些混合材料作为逻辑设备的例子,包括可重构材料和简单的算术系统,以及与纳米级信息处理有关的机械问题。

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