Emerging chiral molecular carbon materials for chiroptoelectronic applications

IF 5.1 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Xinyang Zhang, Xinyang Ge, Jingya You, Yipu Wang, Qiang Huang and Li Wan
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引用次数: 0

Abstract

Chirality is a ubiquitous phenomenon in nature and continues to inspire modern materials science. Among various chiral systems, chiral carbon materials have been extensively developed, with their chirality flexibly tuned through molecular-level chemical design and further amplified by solid-state intermolecular assembly. By incorporating different functional groups, these carbon materials can be tailored to exhibit excellent light-emitting and light-absorbing properties, making their chiral forms suitable for emitting or detecting circularly polarized light. In this review, we first introduce the basic concepts of chiral materials and spectroscopic chiroptical responses, and explain how chirality is introduced into molecular carbon systems through chemical design. We then systematically summarize recent research progress in chiral optoelectronic (chiroptoelectronic) applications that incorporate chiral carbon materials. Furthermore, we analyze the dissymmetry factors of each system and offer perspectives on strategies to enhance performance. We believe that this review will attract broad attention from interdisciplinary researchers working on carbon materials, chirality science, and optoelectronics.

Abstract Image

新兴手性分子碳材料的手电子应用
手性是自然界中普遍存在的现象,并不断激发着现代材料科学的灵感。在各种各样的手性体系中,手性碳材料得到了广泛的发展,其手性可以通过分子水平的化学设计进行灵活的调整,并通过固态分子间组装进一步放大。通过加入不同的官能团,这些碳材料可以被定制为具有优异的发光和光吸收性能,使其手性形式适合于发射或检测圆偏振光。本文首先介绍了手性材料和光谱chiroptic反应的基本概念,并解释了如何通过化学设计将手性引入分子碳体系。然后,我们系统地总结了近年来结合手性碳材料的手性光电(chiroptoelectronic)应用的研究进展。此外,我们分析了每个系统的不对称因素,并提出了提高绩效的策略。我们相信这篇综述将引起碳材料、手性科学和光电子学等跨学科研究人员的广泛关注。
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来源期刊
Journal of Materials Chemistry C
Journal of Materials Chemistry C MATERIALS SCIENCE, MULTIDISCIPLINARY-PHYSICS, APPLIED
CiteScore
10.80
自引率
6.20%
发文量
1468
期刊介绍: The Journal of Materials Chemistry is divided into three distinct sections, A, B, and C, each catering to specific applications of the materials under study: Journal of Materials Chemistry A focuses primarily on materials intended for applications in energy and sustainability. Journal of Materials Chemistry B specializes in materials designed for applications in biology and medicine. Journal of Materials Chemistry C is dedicated to materials suitable for applications in optical, magnetic, and electronic devices. Example topic areas within the scope of Journal of Materials Chemistry C are listed below. This list is neither exhaustive nor exclusive. Bioelectronics Conductors Detectors Dielectrics Displays Ferroelectrics Lasers LEDs Lighting Liquid crystals Memory Metamaterials Multiferroics Photonics Photovoltaics Semiconductors Sensors Single molecule conductors Spintronics Superconductors Thermoelectrics Topological insulators Transistors
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