Carborane Meets Metal Nanocluster: New Opportunities in Nanomaterials.

IF 17.7 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Accounts of Chemical Research Pub Date : 2025-04-15 Epub Date: 2025-03-28 DOI:10.1021/acs.accounts.5c00033
Jia-Hong Huang, Yao Cui, Zhao-Yang Wang, Shuang-Quan Zang
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Abstract

ConspectusMetal nanoclusters, distinguished by their atom-precise structures and quantum size effect, are regarded as a crucial bridge between organometallic complexes and plasmonic metal nanoparticles. These nanoclusters are primarily composed of a metallic core enveloped by protective ligands, wherein the ligands play a vital role in determining the nanoclusters' synthesis, structural integrity, and physicochemical properties. Considerable efforts in ligand engineering have concentrated on exploring novel coordinating functional groups to advance nanocluster research, particularly in the precise and controlled synthesis of superatomic nanoclusters, fine-tuning their intrinsic properties, and subsequent assembly and application. However, the backbone of these ligands seems equally important but attracts less attention. It is reasonable that if the utility of the two moieties (coordinating functional group and backbone) provokes a profound synergistic effect, their contributions to the structures and properties of the resultant metal nanoclusters are extremely inestimable. In this context, carborane, with its spherical shape and three-dimensional aromaticity (electronic effect), has emerged as a promising candidate for ligand backbone design. Over the past two decades, the incorporation of carborane moieties into ligands has enabled the construction of various metal nanoclusters exhibiting distinct architectures, enhanced stability, and unique reactivity. Therefore, it is important to present the current status and challenges associated with carboranyl ligand-protected metal nanoclusters to guide their future development. This Account provides a comprehensive summary of the recent advances in carboranyl ligand-stabilized metal nanoclusters, with a primary focus on the contributions from our laboratory. We begin by discussing the unique advantages of introducing carborane-based ligands in metal nanocluster preparation, with particular emphasis on their virtues for the synthesis of superatomic nanoclusters, heterometal-doped nanoclusters, and isostructural nanoclusters. Subsequently, we summarize the carborane-based ligand engineering strategies for precise modification and hierarchical assembly of metal nanoclusters, elucidating how the incorporation of carborane facilitates the modulation of specific properties and promotes supramolecular and covalent assembly. Furthermore, we discuss the cooperativity achieved by carboranyl ligands and the metal nanocluster framework to broaden the scope of applications for these nanoclusters in versatile fields, including hypergolic fuels, a previously unexplored area. Finally, we discuss the challenges facing future research on carboranyl ligand-protected metal nanoclusters, including the incorporation of nido-carborane or metallocarborane, a fundamental understanding of structure-property relationships, and potential applications such as boron neutron capture therapy and radionuclide extraction. This Account aims to stimulate interest in the unique attributes of carborane-based ligands and their corresponding metal nanoclusters among students and researchers across diverse disciplines, including chemistry, crystal engineering, and materials science.

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碳硼烷与金属纳米团簇:纳米材料的新机遇。
金属纳米团簇以其原子精确结构和量子尺寸效应而被认为是有机金属配合物和等离子体金属纳米粒子之间的重要桥梁。这些纳米团簇主要由被保护配体包裹的金属核组成,其中配体在决定纳米团簇的合成、结构完整性和物理化学性质方面起着至关重要的作用。在配体工程方面,人们一直致力于探索新的配位官能团,以推进纳米团簇的研究,特别是在超原子纳米团簇的精确和可控合成,微调其固有性质以及随后的组装和应用方面。然而,这些配体的主链似乎同样重要,但引起的关注较少。这是合理的,如果这两个基团(配位官能团和主链)的效用引起了深刻的协同效应,它们对所得到的金属纳米团簇的结构和性能的贡献是非常不可估量的。在这种情况下,碳硼烷由于其球形和三维芳香性(电子效应),成为配体主结构设计的一个有希望的候选者。在过去的二十年中,碳硼烷基团与配体的结合使得各种金属纳米团簇的构建具有不同的结构,增强的稳定性和独特的反应性。因此,介绍碳硼基配体保护金属纳米团簇的现状和面临的挑战,对指导其未来的发展具有重要意义。本报告全面总结了碳硼基配体稳定金属纳米团簇的最新进展,重点介绍了我们实验室的贡献。我们首先讨论了在金属纳米团簇制备中引入碳烷基配体的独特优势,特别强调了它们在合成超原子纳米团簇、异质金属掺杂纳米团簇和等结构纳米团簇方面的优点。随后,我们总结了基于碳硼烷的金属纳米簇精确修饰和分层组装的配体工程策略,阐明了碳硼烷的加入如何促进特定性质的调节,并促进超分子和共价组装。此外,我们讨论了碳羰基配体和金属纳米团簇框架实现的协同性,以扩大这些纳米团簇在多功能领域的应用范围,包括自燃燃料,这是一个以前未开发的领域。最后,我们讨论了碳硼基配体保护金属纳米团簇未来研究面临的挑战,包括纳米碳硼烷或金属碳硼烷的结合,对结构-性质关系的基本理解,以及硼中子捕获治疗和放射性核素提取等潜在应用。本报告旨在激发包括化学、晶体工程和材料科学在内的不同学科的学生和研究人员对碳硼烷基配体及其相应的金属纳米簇的独特属性的兴趣。
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来源期刊
Accounts of Chemical Research
Accounts of Chemical Research 化学-化学综合
CiteScore
31.40
自引率
1.10%
发文量
312
审稿时长
2 months
期刊介绍: Accounts of Chemical Research presents short, concise and critical articles offering easy-to-read overviews of basic research and applications in all areas of chemistry and biochemistry. These short reviews focus on research from the author’s own laboratory and are designed to teach the reader about a research project. In addition, Accounts of Chemical Research publishes commentaries that give an informed opinion on a current research problem. Special Issues online are devoted to a single topic of unusual activity and significance. Accounts of Chemical Research replaces the traditional article abstract with an article "Conspectus." These entries synopsize the research affording the reader a closer look at the content and significance of an article. Through this provision of a more detailed description of the article contents, the Conspectus enhances the article's discoverability by search engines and the exposure for the research.
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