Diversification of Metallic Molecules through Derivatization Chemistry of Au25 Nanoclusters

被引:37
作者
Cao, Yitao [1 ]
Chen, Tiankai [1 ]
Yao, Qiaofeng [1 ]
Xie, Jianping [1 ]
机构
[1] Natl Univ Singapore, Dept Chem & Biomol Engn, Singapore 117585, Singapore
关键词
PROTECTED GOLD CLUSTERS; CRYSTAL-STRUCTURE; GROWTH; NANOPARTICLES; COMPLEXES; ORIGIN;
D O I
10.1021/acs.accounts.1c00481
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
CONSPECTUS: Derivatization is the fine chemistry that can produce chemical compounds from similar precursors and has been widely used in the field of organic synthesis to achieve diversification of molecular properties and functionalities. Ligand-protected metal nanoclusters (NCs) are metallic molecules with a definite molecular formula, well-defined molecular structure, and molecular-like physical and chemical properties. Unlike organic compounds, which have almost infinite species, until now only hundreds of metal NC species have been discovered, and only a few of them have been structurally resolved. Therefore, the diversification of NC species and functions is highly desirable in nanoscience and nanochemistry. As an efficient approach for generating a library of compounds from a given precursor, derivatization chemistry is not only applicable in producing new organic compounds but also a promising strategy for generating new metal NC species with intriguing properties and functions. The key to the derivatization of metal NCs is to design an efficient derivatization reaction suitable for metal NCs and spontaneously realize the customization of this special macromolecule (metallic molecule) at the atomic and molecular level. In this Account, we use the flagship thiolate-protected NC Au25SR18 (SR denotes a thiolate ligand) as a model to illustrate the derivatization chemistry of metal NCs. In the past 3 years we have developed various derivatization reactions of Au25SR18, including isomerization, redox, ligand addition, alloying, and self-assembly reactions. We discuss the mechanisms that govern these reactions to realize precise customization of the NC structure, size, surface, composition, and interactions. It is particularly noteworthy that advanced techniques such as real-time electrospray ionization mass spectrometry and NMR spectroscopy enable us to have an atomic- and molecular-level understanding of the reaction mechanisms, which will further promote our efforts to design derivatization reactions for metal NCs. Through these delicate derivatization reactions, we can produce Au25SR18 derivatives with new physical, chemical, and biological properties, including electronic structures, photoluminescence, surface reactivity, and antimicrobial properties. Finally, we provide our perspectives on the opportunities and challenges of metal NC derivatization. The derivatization chemistry of metal NCs can not only diversify the properties and functions of metal NCs but also help us understand the structure-property relationship and design principles of metal nanomaterials, which will help advance the research frontier of nanoscience toward atomic precision.
引用
收藏
页码:4142 / 4153
页数:12
相关论文
共 55 条
  • [1] Cao Y., CHEM-US, V7, P2227
  • [2] Revealing the etching process of water-soluble Au25 nanoclusters at the molecular level
    Cao, Yitao
    Liu, Tongyu
    Chen, Tiankai
    Zhang, Bihan
    Jiang, De-en
    Xie, Jianping
    [J]. NATURE COMMUNICATIONS, 2021, 12 (01)
  • [3] Control of single-ligand chemistry on thiolated Au25 nanoclusters
    Cao, Yitao
    Fung, Victor
    Yao, Qiaofeng
    Chen, Tiankai
    Zang, Shuangquan
    Jiang, De-en
    Xie, Jianping
    [J]. NATURE COMMUNICATIONS, 2020, 11 (01)
  • [4] Atomically Precise Clusters of Noble Metals: Emerging Link between Atoms and Nanoparticles
    Chakraborty, Indranath
    Pradeep, Thalappil
    [J]. CHEMICAL REVIEWS, 2017, 117 (12) : 8208 - 8271
  • [5] The Structure and Optical Properties of the [Au18(SR)14] Nanocluster
    Chen, Shuang
    Wang, Shuxin
    Zhong, Juan
    Song, Yongbo
    Zhang, Jun
    Sheng, Hongting
    Pei, Yong
    Zhu, Manzhou
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2015, 54 (10) : 3145 - 3149
  • [6] Synthesis of Water-Soluble [Au25(SR)18]- Using a Stoichiometric Amount of NaBH4
    Chen, Tiankai
    Fung, Victor
    Yao, Qiaofeng
    Luo, Zhentao
    Jiang, De-en
    Xie, Jianping
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2018, 140 (36) : 11370 - 11377
  • [7] Case Studies in Nanocluster Synthesis and Characterization: Challenges and Opportunities
    Cook, Andrew W.
    Hayton, Trevor W.
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 2018, 51 (10) : 2456 - 2464
  • [8] Structure Determination of [Au18(SR)14]
    Das, Anindita
    Liu, Chong
    Byun, Hee Young
    Nobusada, Katsuyuki
    Zhao, Shuo
    Rosi, Nathaniel
    Jin, Rongchao
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2015, 54 (10) : 3140 - 3144
  • [9] Discovery, Mechanism, and Application of Antigalvanic Reaction
    Gan, Zibao
    Xia, Nan
    Woo, Zhikun
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 2018, 51 (11) : 2774 - 2783
  • [10] Fluorescent Gold Nanoclusters with Interlocked Staples and a Fully Thiolate-Bound Kernel
    Gan, Zibao
    Lin, Yuejian
    Luo, Lun
    Han, Guangmei
    Liu, Wei
    Liu, Zhengjie
    Yao, Chuanhao
    Weng, Linhong
    Liao, Lingwen
    Chen, Jishi
    Liu, Xu
    Luo, Yi
    Wang, Chengming
    Wei, Shiqiang
    Wu, Zhikun
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2016, 55 (38) : 11567 - 11571