Suppr超能文献

复合铜硫属化物纳米晶体。

Compound Copper Chalcogenide Nanocrystals.

机构信息

Department of Chemical Sciences and Bernal Institute, University of Limerick , Limerick, Ireland.

Catalonia Energy Research Institute - IREC, Sant Adria de Besos , Jardins de les Dones de Negre n.1, Pl. 2, 08930 Barcelona, Spain.

出版信息

Chem Rev. 2017 May 10;117(9):5865-6109. doi: 10.1021/acs.chemrev.6b00376. Epub 2017 Apr 10.

Abstract

This review captures the synthesis, assembly, properties, and applications of copper chalcogenide NCs, which have achieved significant research interest in the last decade due to their compositional and structural versatility. The outstanding functional properties of these materials stems from the relationship between their band structure and defect concentration, including charge carrier concentration and electronic conductivity character, which consequently affects their optoelectronic, optical, and plasmonic properties. This, combined with several metastable crystal phases and stoichiometries and the low energy of formation of defects, makes the reproducible synthesis of these materials, with tunable parameters, remarkable. Further to this, the review captures the progress of the hierarchical assembly of these NCs, which bridges the link between their discrete and collective properties. Their ubiquitous application set has cross-cut energy conversion (photovoltaics, photocatalysis, thermoelectrics), energy storage (lithium-ion batteries, hydrogen generation), emissive materials (plasmonics, LEDs, biolabelling), sensors (electrochemical, biochemical), biomedical devices (magnetic resonance imaging, X-ray computer tomography), and medical therapies (photochemothermal therapies, immunotherapy, radiotherapy, and drug delivery). The confluence of advances in the synthesis, assembly, and application of these NCs in the past decade has the potential to significantly impact society, both economically and environmentally.

摘要

这篇综述介绍了铜硫属化物 NCs 的合成、组装、性质和应用,由于其组成和结构的多样性,这些 NCs 在过去十年中引起了极大的研究兴趣。这些材料的卓越功能特性源于其能带结构和缺陷浓度之间的关系,包括载流子浓度和电子电导率特性,这会影响它们的光电、光学和等离子体性质。再加上几种亚稳晶体相和化学计量比以及缺陷形成能低,使得这些材料的可重复性合成具有可调参数的特点。此外,本综述还介绍了这些 NCs 的分级组装进展,这架起了它们离散和集体性质之间的桥梁。它们广泛的应用领域包括能量转换(光伏、光催化、热电)、能量存储(锂离子电池、氢气生成)、发光材料(等离子体、LED、生物标记)、传感器(电化学、生化)、生物医学设备(磁共振成像、X 射线计算机断层扫描)和医学治疗(光热疗、免疫疗法、放疗和药物输送)。这些 NCs 在过去十年中在合成、组装和应用方面的进展融合在一起,有可能在经济和环境方面对社会产生重大影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验