Özkar Saim
Department of Chemistry, Middle East Technical University, Ankara, Turkey.
Dalton Trans. 2021 Sep 21;50(36):12349-12364. doi: 10.1039/d1dt01709h.
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts for the hydrolytic dehydrogenation of ammonia borane (AB). After a short prelude emphasizing the importance of increasing the atom efficiency of high cost, precious platinum nanoparticles (NPs) which are known to be one of the highest activity catalysts for hydrogen generation from the hydrolysis of AB, this article reviews all the available reports on the use of platinum-based catalysts for this hydrolysis reaction covering (i) early tested platinum catalysts, (ii) platinum(0) NPs supported on oxides, (iii) platinum(0) NPs supported on carbonaceous materials, (iv) supported platinum single-atom catalysts, (v) bimetallic- and (vi) multimetallic-platinum NP nanocatalysts, and (vii) magnetically separable platinum-based catalysts. All the reported results are tabulated along with the important parameters used in the platinum-catalyzed hydrolysis of AB. In the section "Concluding remarks and a look towards the future" a discussion is devoted to the approaches for making high cost, precious platinum catalysts as efficient as possible, ultimately lowering the cost, including the suggestions for the future research in this field.
本综述报告了一项关于开发用于氨硼烷(AB)水解脱氢的高效铂纳米催化剂进展的调查。在简短的前言中强调了提高高成本、珍贵的铂纳米颗粒(NPs)原子效率的重要性,已知铂纳米颗粒是AB水解制氢活性最高的催化剂之一。本文综述了所有关于使用铂基催化剂进行该水解反应的现有报告,涵盖:(i)早期测试的铂催化剂;(ii)负载在氧化物上的铂(0)NPs;(iii)负载在碳质材料上的铂(0)NPs;(iv)负载的铂单原子催化剂;(v)双金属和(vi)多金属铂NP纳米催化剂;以及(vii)磁分离铂基催化剂。所有报告结果均列表呈现,并列出了铂催化AB水解中使用的重要参数。在“结论与展望未来”部分,讨论了使高成本、珍贵的铂催化剂尽可能高效,最终降低成本的方法,包括对该领域未来研究的建议。