• 文献检索
  • 文档翻译
  • 深度研究
  • 学术资讯
  • Suppr Zotero 插件Zotero 插件
  • 邀请有礼
  • 套餐&价格
  • 历史记录
应用&插件
Suppr Zotero 插件Zotero 插件浏览器插件Mac 客户端Windows 客户端微信小程序
定价
高级版会员购买积分包购买API积分包
服务
文献检索文档翻译深度研究API 文档MCP 服务
关于我们
关于 Suppr公司介绍联系我们用户协议隐私条款
关注我们

Suppr 超能文献

核心技术专利:CN118964589B侵权必究
粤ICP备2023148730 号-1Suppr @ 2026

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验

原子精确的硬币金属纳米团簇的表面化学:从结构控制到表面反应性与催化作用

Surface Chemistry of Atomically Precise Coinage-Metal Nanoclusters: From Structural Control to Surface Reactivity and Catalysis.

作者信息

Yan Juanzhu, Teo Boon K, Zheng Nanfeng

机构信息

State Key Laboratory for Physical Chemistry of Solid Surfaces, Collaborative Innovation Center of Chemistry for Energy Materials, and National & Local Joint Engineering Research Center for Preparation Technology of Nanomaterials, College of Chemistry and Chemical Engineering , Xiamen University , Xiamen 361005 , China.

出版信息

Acc Chem Res. 2018 Dec 18;51(12):3084-3093. doi: 10.1021/acs.accounts.8b00371. Epub 2018 Nov 15.

DOI:10.1021/acs.accounts.8b00371
PMID:30433756
Abstract

A comprehensive understanding of chemical bonding and reactions at the surface of nanomaterials is of great importance in the rational design of their functional properties and applications. With the rapid development in cluster science, it has become clear that atomically precise metal clusters represent ideal models for resolving various important and/or unsolved issues related to surface science. This Account highlights our recent efforts on the fabrication of ligand-stabilized coinage nanoclusters with atomic precision from the viewpoint of surface coordination chemistry in particular. The successful synthesis of a large variety of metal clusters in our group has greatly benefitted from the development of an effective amine-assisted NaBH reduction method. First discussed in this Account is how the introduction of amines in the synthetic protocol enhances the long-term stability and high-yield production of Ag/Cu-based metals in air. Such a method allows the utilization of different organic ligands as surface stabilizing agents to manipulate both the core and surface structures of metal nanoclusters, helping to understand the role of surface ligands in determining the structures of metal nanoclusters. The coordination chemistry of ligands used in the synthesis of metal nanoclusters is crucial in determining their overall shape, metal arrangement, surface ligand binding structure, chirality and also metal exposure. Detailed discussions are given in the following four different systems: (1) The co-use of phosphines and thiolates with rich coordination structures (2 to 4-coordinated) helps to control the formation of a sequence of Ag nanoclusters with a near-perfectly cubic shape; (2) The metal arrangements and surface structures of AuCu clusters highly depend on metal precursors and counter cations used in the synthesis; (3) Metal clusters with intrinsic chirality are readily prepared by introducing chiral ligands or counterions, making it possible to obtain optically active enantiomers and understand the origin of chirality of metal nanoclusters; (4) The variation of metal exposure of the inner metal core of metal nanocluster can be controlled by the surface ligand coordination structure. Such capabilities to manipulate the surface structure of metal nanoclusters allow the creation of model systems for investigating the structure-reactivity relationship of metal nanomaterials. Several important examples are then discussed to highlight the importance of ligand coordination chemistry in tuning the surface reactivity and catalysis of metal nanoclusters. For example, bulky thiolates on Ag are demonstrated to be more labile than small thiolates for making metal nanoclusters with both enhanced ligand exchange capability and catalysis. Alkynyl ligands can be thermally released from metal nanoclusters more easily than thiolates and halides while maintaining the overall structure, thereby serving as ideal systems for understanding the promoting effect of surface stabilizers on catalysis. Finally, we provide a perspective on the principles of surface coordination chemistry of metal nanoclusters and their potential applications with regards to catalysis of protected metal clusters.

摘要

全面理解纳米材料表面的化学键合和反应对于合理设计其功能特性及应用至关重要。随着团簇科学的迅速发展,已明确原子精确的金属团簇是解决与表面科学相关的各种重要和/或未解决问题的理想模型。本综述尤其从表面配位化学的角度突出了我们近期在以原子精度制备配体稳定的贵金属纳米团簇方面所做的努力。我们小组成功合成了多种金属团簇,这在很大程度上得益于一种有效的胺辅助硼氢化钠还原方法的发展。本综述首先讨论了在合成方案中引入胺如何提高银/铜基金属在空气中的长期稳定性和高产率制备。这种方法允许使用不同的有机配体作为表面稳定剂来操纵金属纳米团簇的核心和表面结构,有助于理解表面配体在确定金属纳米团簇结构中的作用。用于合成金属纳米团簇的配体的配位化学对于确定其整体形状、金属排列、表面配体结合结构、手性以及金属暴露情况至关重要。在以下四个不同体系中进行了详细讨论:(1)具有丰富配位结构(2至4配位)的膦和硫醇盐的共同使用有助于控制一系列近乎完美立方体形的银纳米团簇的形成;(2)金铜团簇的金属排列和表面结构高度依赖于合成中使用的金属前驱体和抗衡阳离子;(3)通过引入手性配体或抗衡离子可以很容易地制备具有固有手性的金属团簇,从而有可能获得光学活性对映体并理解金属纳米团簇的手性起源;(4)金属纳米团簇内部金属核的金属暴露变化可以通过表面配体配位结构来控制。这种操纵金属纳米团簇表面结构的能力使得能够创建用于研究金属纳米材料结构 - 反应性关系的模型体系。然后讨论了几个重要例子以突出配体配位化学在调节金属纳米团簇表面反应性和催化作用方面的重要性。例如,对于制备具有增强的配体交换能力和催化作用的金属纳米团簇,银上的大体积硫醇盐被证明比小体积硫醇盐更不稳定。炔基配体比硫醇盐和卤化物更容易从金属纳米团簇上热释放,同时保持整体结构,因此是理解表面稳定剂对催化作用促进效果的理想体系。最后,我们对金属纳米团簇的表面配位化学原理及其在受保护金属团簇催化方面的潜在应用提供了展望。

相似文献

1
Surface Chemistry of Atomically Precise Coinage-Metal Nanoclusters: From Structural Control to Surface Reactivity and Catalysis.原子精确的硬币金属纳米团簇的表面化学:从结构控制到表面反应性与催化作用
Acc Chem Res. 2018 Dec 18;51(12):3084-3093. doi: 10.1021/acs.accounts.8b00371. Epub 2018 Nov 15.
2
Alkynyl Approach toward the Protection of Metal Nanoclusters.用于保护金属纳米团簇的炔基方法。
Acc Chem Res. 2018 Oct 16;51(10):2465-2474. doi: 10.1021/acs.accounts.8b00359. Epub 2018 Oct 1.
3
Insights into Interfaces, Stability, Electronic Properties, and Catalytic Activities of Atomically Precise Metal Nanoclusters from First Principles.基于第一性原理对原子精确金属纳米团簇的界面、稳定性、电子性质和催化活性的见解
Acc Chem Res. 2018 Nov 20;51(11):2793-2802. doi: 10.1021/acs.accounts.8b00380. Epub 2018 Nov 6.
4
Toward Total Synthesis of Thiolate-Protected Metal Nanoclusters.硫醇盐保护的金属纳米团簇的全合成研究
Acc Chem Res. 2018 Jun 19;51(6):1338-1348. doi: 10.1021/acs.accounts.8b00065. Epub 2018 May 24.
5
Atomically Precise Alkynyl-Protected Metal Nanoclusters as a Model Catalyst: Observation of Promoting Effect of Surface Ligands on Catalysis by Metal Nanoparticles.原子精度炔基保护的金属纳米团簇作为模型催化剂:观察表面配体对金属纳米粒子催化作用的促进效应。
J Am Chem Soc. 2016 Mar 16;138(10):3278-81. doi: 10.1021/jacs.5b12730. Epub 2016 Mar 7.
6
Chirality and Surface Bonding Correlation in Atomically Precise Metal Nanoclusters.原子精确金属纳米团簇中的手性与表面键合相关性
Adv Mater. 2020 Oct;32(41):e1905488. doi: 10.1002/adma.201905488. Epub 2020 Mar 17.
7
Toward the Tailoring Chemistry of Metal Nanoclusters for Enhancing Functionalities.迈向用于增强功能的金属纳米团簇定制化学。
Acc Chem Res. 2018 Nov 20;51(11):2764-2773. doi: 10.1021/acs.accounts.8b00383. Epub 2018 Oct 29.
8
Toward Solution Syntheses of the Tetrahedral Au Pyramid and Atomically Precise Gold Nanoclusters with Uncoordinated Sites.迈向具有未配位位点的四面体金金字塔和原子精确金纳米团簇的溶液合成。
Acc Chem Res. 2018 Sep 18;51(9):2159-2168. doi: 10.1021/acs.accounts.8b00257. Epub 2018 Aug 2.
9
Surface Coordination Chemistry of Metal Nanomaterials.金属纳米材料的表面配位化学。
J Am Chem Soc. 2017 Feb 15;139(6):2122-2131. doi: 10.1021/jacs.6b10978. Epub 2017 Jan 26.
10
Structurally Precise Dichalcogenolate-Protected Copper and Silver Superatomic Nanoclusters and Their Alloys.结构精确的二硫属化物保护的铜和银超原子纳米团簇及其合金
Acc Chem Res. 2018 Oct 16;51(10):2475-2483. doi: 10.1021/acs.accounts.8b00349. Epub 2018 Sep 28.

引用本文的文献

1
Atomically Precise Platinum Nanoclusters: History and Recent Advances in Synthesis, Structure, and Properties.原子精确的铂纳米团簇:合成、结构和性质的历史与最新进展
Precis Chem. 2025 May 2;3(8):401-423. doi: 10.1021/prechem.5c00003. eCollection 2025 Aug 25.
2
Atomically Precise Metal Nanoclusters as Single Electron Transferers for Hydroborylation.原子精确的金属纳米团簇作为硼氢化反应的单电子转移体
Precis Chem. 2023 Mar 3;1(3):175-182. doi: 10.1021/prechem.3c00003. eCollection 2023 May 22.
3
Evolution of coherent vibrations in atomically precise gold quantum rods with periodic elongation.
具有周期性伸长的原子精确金量子棒中相干振动的演化
Sci Adv. 2025 Jun 13;11(24):eadx2781. doi: 10.1126/sciadv.adx2781. Epub 2025 Jun 11.
4
Structural Origin of Spin-Orbit Splitting of 1P Orbitals of Icosahedral Au Superatom Protected by Ligands.配体保护的二十面体金超原子1P轨道自旋轨道分裂的结构起源
Angew Chem Int Ed Engl. 2025 Jul 21;64(30):e202508151. doi: 10.1002/anie.202508151. Epub 2025 Jun 1.
5
Arylation of gold nanoclusters and insights into structure-related CO reduction reaction performances.金纳米团簇的芳基化及其与结构相关的一氧化碳还原反应性能研究
Chem Sci. 2025 May 12. doi: 10.1039/d5sc01200g.
6
Supported Binuclear Gold Phosphine Complexes as CO Oxidation Catalysts: Insights into the Formation of Surface-Stabilized Au Particles.负载型双核金膦配合物作为CO氧化催化剂:对表面稳定金颗粒形成的见解
Small Sci. 2024 Oct 14;4(12):2400345. doi: 10.1002/smsc.202400345. eCollection 2024 Dec.
7
Vertex-Shared Linear Superatomic Molecules: Stepping Stones to Novel Materials Composed of Noble Metal Clusters.顶点共享线性超原子分子:通往由贵金属团簇组成的新型材料的垫脚石。
Small Sci. 2023 Apr 24;3(5):2300024. doi: 10.1002/smsc.202300024. eCollection 2023 May.
8
Pd Icosahedral Nanoparticles Promote Skin Wound Healing by Enhancing SP1-HBEGF Axis-Mediated Keratinocytes Proliferation.二十面体钯纳米颗粒通过增强SP1-HBEGF轴介导的角质形成细胞增殖促进皮肤伤口愈合。
Int J Nanomedicine. 2025 Mar 12;20:3067-3081. doi: 10.2147/IJN.S499289. eCollection 2025.
9
Activation of photocatalytic CO reduction by loading hydrophobic thiolate-protected Au nanocluster cocatalyst.通过负载疏水性硫醇盐保护的金纳米团簇助催化剂来激活光催化CO还原反应。
Nanoscale Adv. 2025 Feb 12;7(6):1518-1523. doi: 10.1039/d4na01045k. eCollection 2025 Mar 11.
10
Ligand-Dependent Intracluster Interactions in Electrochemical CO Reduction Using Cu Nanoclusters.使用铜纳米团簇进行电化学CO还原时的配体依赖性簇内相互作用
Small. 2025 Apr;21(16):e2409910. doi: 10.1002/smll.202409910. Epub 2024 Dec 4.