4.8 Article

Shape-Controlled Dodecaborate Supramolecular Organic-Framework-Supported Ultrafine Trimetallic PtCoNi for Catalytic Hydrolysis of Ammonia Borane

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 11, Issue 26, Pages 23445-23453

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b02963

Keywords

trimetallic nanoalloys; supramolecular chemistry; shape-controlled synthesis; supramolecular organic frameworks; hydrogen generation

Funding

  1. Fundamental Research Funds for the Central Universities [2042016HF1054]
  2. Wuhan University [WHU-2016-SYJS-06]

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On the basis of the unique chaotropic supra molecular assembly of cucurbitHuril (CB5) and dodecahydro-closo-dodecaborate anion [closo-B12H12](2-), we have developed an efficient and universal platform to fabricate shape-controlled dodecaborate-based supramolecular organic frameworks (BOFs) decorated with ultrafine monodispersed trimetallic alloys. Simply by regulating the molar ratio of CB5 and [closo-B12H12](2-), a series of fascinating morphologies, such as flowerlike structures, nanorods, nanocubes, and nanosheets, were successfully constructed. These obtained BOFs were proved to be good substrate supports for in situ synthesis of trimetallic PtCoNi nanoalloys, where the final PtCoNi-BOFs materials were obtained efficiently as a precipitate from aqueous solutions, and showed excellent catalytic performance in ammonia borane hydrolysis with a high turnover frequency of 1490 mol(H2) mol(Pt)(-1) min(-1) and a low activation energy of 15.79 kJ mol(-1).

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