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原子精确金属纳米团簇的纳米杂化物。

Nanohybrids of atomically precise metal nanoclusters.

作者信息

Sahoo Koustav, Gazi Tapu Raihan, Roy Soumyadip, Chakraborty Indranath

机构信息

School of Nano Science and Technology, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.

出版信息

Commun Chem. 2023 Jul 26;6(1):157. doi: 10.1038/s42004-023-00958-7.

Abstract

Atomically precise metal nanoclusters (NCs) with molecule-like structures are emerging nanomaterials with fascinating chemical and physical properties. Photoluminescence (PL), catalysis, sensing, etc., are some of the most intriguing and promising properties of NCs, making the metal NCs potentially beneficial in different applications. However, long-term instability under ambient conditions is often considered the primary barrier to translational research in the relevant application fields. Creating nanohybrids between such atomically precise NCs and other stable nanomaterials (0, 1, 2, or 3D) can help expand their applicability. Many such recently reported nanohybrids have gained promising attention as a new class of materials in the application field, exhibiting better stability and exciting properties of interest. This perspective highlights such nanohybrids and briefly explains their exciting properties. These hybrids are categorized based on the interactions between the NCs and other materials, such as metal-ligand covalent interactions, hydrogen-bonding, host-guest, hydrophobic, and electrostatic interactions during the formation of nanohybrids. This perspective will also capture some of the new possibilities with such nanohybrids.

摘要

具有分子状结构的原子精确金属纳米团簇(NCs)是一类新兴的纳米材料,具有迷人的化学和物理性质。光致发光(PL)、催化、传感等是NCs最引人入胜且最具前景的一些性质,这使得金属NCs在不同应用中具有潜在的益处。然而,在环境条件下的长期不稳定性通常被认为是相关应用领域转化研究的主要障碍。在这种原子精确的NCs与其他稳定的纳米材料(0维、1维、2维或3维)之间创建纳米杂化物有助于扩大其适用性。最近报道的许多此类纳米杂化物作为应用领域中的一类新型材料受到了广泛关注,展现出更好的稳定性和令人感兴趣的特性。本文综述了此类纳米杂化物,并简要解释了它们令人兴奋的性质。这些杂化物根据NCs与其他材料之间的相互作用进行分类,例如在纳米杂化物形成过程中的金属-配体共价相互作用、氢键、主客体相互作用、疏水相互作用和静电相互作用。本文还将探讨此类纳米杂化物的一些新可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa8c/10372104/9c6515fcf56b/42004_2023_958_Fig1_HTML.jpg

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