...
首页> 外文期刊>Nanoscale >Copper nanoclusters: designed synthesis, structural diversity, and multiplatform applications
【24h】

Copper nanoclusters: designed synthesis, structural diversity, and multiplatform applications

机译:铜的制备:设计合成,结构的多样性和多平台应用程序

获取原文

摘要

Atomically precise metal nanoclusters (MNCs) have gained tremendous research interest in recent years due to their extraordinary properties. The molecular-like properties that originate from the quantized electronic states provide novel opportunities for the construction of unique nanomaterials possessing rich molecular-like absorption, luminescence, and magnetic properties. The field of monolayer-protected metal nanoclusters, especially copper, with well-defined molecular structures and compositions, is relatively new, about two to three decades old. Nevertheless, the massive progress in the field illustrates the importance of such nanoobjects as promising materials for various applications. In this respect, nanocluster-based catalysts have become very popular, showing high efficiencies and activities for the catalytic conversion of chemical compounds. Biomedical applications of clusters are an active research field aimed at finding better fluorescent contrast agents, therapeutic pharmaceuticals for the treatment and prevention of diseases, the early diagnosis of cancers and other potent diseases, especially at early stages. A huge library of structures and the compositions of copper nanoclusters (CuNCs) with atomic precisions have already been discovered during last few decades; however, there are many concerns to be addressed and questions to be answered. Hopefully, in future, with the combined efforts of material scientists, inorganic chemists, and computational scientists, a thorough understanding of the unique molecular-like properties of metal nanoclusters will be achieved. This, on the other hand, will allow the interdisciplinary researchers to design novel catalysts, biosensors, or therapeutic agents using highly structured, atomically precise, and stable CuNCs. Thus, we hope this review will guide the reader through the field of CuNCs, while discussing the main achievements and improvements, along with challenges and drawbacks that one needs to face and overcome.
机译:自动精密金属制备(跨国公司)在最近得到了极大的研究兴趣年由于他们非凡的属性。这源自molecular-like属性量子化电子态提供小说建设的独特的机会纳米材料具有丰富molecular-like吸收、发光和磁性属性。金属发光机制,特别是铜、定义良好的分子结构和成分,是相对较新的,大约两个三十年的历史。该领域的进展说明了重要性等nanoobjects有前途的材料各种应用程序。nanocluster-based催化剂已成为非常很受欢迎,表现出较高的效率和活动催化转化的化学物质化合物。一个活跃的研究领域,旨在找到吗更好的荧光造影剂,治疗药物治疗和预防的疾病,癌症的早期诊断其他的疾病,尤其是在早期阶段。成分的铜纳米束(CuNCs)原子精度已经被发现了在近几十年;需要解决的问题和问题回答。无机材料科学家的努力和计算机科学家,化学家独特的全面理解molecular-like金属制备的属性将会实现。允许跨学科研究人员设计新型催化剂,生物传感器,或治疗代理使用高度结构化,自动CuNCs精确和稳定。通过领域的审查将引导读者CuNCs,讨论的主要成就和改进,挑战和缺陷一个需要去面对和克服。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号