Modified Organized Systems by Incorporation of Carbon Allotropes and Derivatives for Electron Shuttle, ET, FRET, MEF, and Quantum Biology Coupling

E. García – Quismondo, A. Bracamonte
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Abstract

In this communication, it was afforded in brief to show how high conjugated carbon based structures, and Carbon allotropes could participate as electron shuttle, semiconductors, quantum emitters and Opto-electronic processors within confined Nanostructured Organized systems. In particular was focused on Nanoassemblies such as vesicles, micelles and lipidic Nanoparticles; and incorporating as well insights from other types of Nanomaterials that could afford to develop new organized systems. It should be noted that in these cases the term organized system was used for all types of molecular assembling and Supramolecular systems that formed structures within the Nanoscale. By this manner the incorporation of Opto-electronic active materials permitted to develop very important photo-physical phenomena with high impact perspectives within technology and Life Sciences. Thus, it was leaded to discuss the participation of Carbon based chemical structures incorporated in different confined molecular media to develop i) Electron Transfer (ET) processes; ii) Reaction Electron Transfers (RET); iii) Catalysis; iv) Quantum emissions; v) Fluorescence Resonance Energy Transfer (FRET); vi) non-classical Light; and vii) Nano-Optics. Therefore, it was intended to present the most important physical and chemical phenomena where they could participate as functional high electronic conjugated chemical structures.
掺入碳配位体和衍生物的改良有组织系统,用于电子穿梭、ET、FRET、MEF 和量子生物学耦合
在这篇通讯中,我们简要介绍了高共轭碳基结构和碳同素异形体如何在封闭的纳米结构有组织系统中充当电子穿梭器、半导体、量子发射器和光电子处理器。研究重点尤其放在纳米集合体上,如囊泡、胶束和脂质纳米颗粒;并从其他类型的纳米材料中汲取灵感,以开发新的有组织系统。应该指出的是,在这些情况下,有组织系统一词是指在纳米尺度内形成结构的所有类型的分子组装和超分子系统。通过这种方式,光电子活性材料的结合允许开发非常重要的光物理现象,在技术和生命科学领域具有很高的影响力。因此,我们开始讨论碳基化学结构在不同封闭分子介质中的参与,以开发 i) 电子转移 (ET) 过程;ii) 反应电子转移 (RET);iii) 催化;iv) 量子发射;v) 荧光共振能量转移 (FRET);vi) 非经典光;以及 vii) 纳米光学。纳米光学。因此,本研究旨在介绍最重要的物理和化学现象,它们可以作为功能性高电子共轭化学结构参与其中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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