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首页> 外文期刊>Russian Chemical Reviews: Reviews on Current Topics in Chemistry >Light-controlled molecular switches based on carbon clusters. Synthesis, properties and application prospects
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Light-controlled molecular switches based on carbon clusters. Synthesis, properties and application prospects

机译:基于碳簇的轻控制分子开关。 合成,性质和应用前景

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摘要

The review integrates and analyzes the experimental and theoretical studies published in the last 15 years dealing with the synthesis and physicochemical and photochromic properties of the hybrid molecules based on carbon clusters (fullerenes, nanotubes and graphene) and photochromic molecules (diarylethenes, spiropyrans, spirooxazines and azobenzene). The state-of-the-art trends of the application of photochromic compounds as light-controlled electronic devices, sensors and optical memory elements are considered. The main types of optical molecular switches derived from carbon clusters are described. The synthetic approaches to these hybrid molecules and the relationships between their structure and photochromic properties are discussed.
机译:审查整合并分析了在过去15年中发表的实验和理论研究,所述实验和理论研究与基于碳簇(富勒烯,纳米管和石墨烯)和光致变色分子(二芳烯酮,螺吡喃,螺氧杂志和和 偶氮苯)。 考虑了光致变色化合物作为光控制电子设备,传感器和光学存储器元件的最先进的趋势。 描述了来自碳簇的光学分子开关的主要类型。 讨论了这些杂化分子的合成方法及其结构和光致变色特性之间的关系。

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