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Pathways towards true catalysts: computational modelling and structural transformations of Zn-polyoxotungstates

机译:朝向真催化剂的途径:Zn-多氧化钨酸盐的计算建模和结构转化

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Current catalysis undergoes a paradigm shift from molecular and heterogeneous realms towards new dynamic catalyst concepts. This calls for innovative strategies to understand the essential catalytic motifs and true catalysts emerging from oxidative transformation processes. Polyoxometalate (POM) clusters offer an inexhaustible reservoir for new noble metal-free catalysts and excellent model systems whose structure-activity relationships and mechanisms remain to be explored. Here, we first introduce a new {ZnnNa6-n(B-alpha-SbW9O33)(2)} (n = 3-6) catalyst family with remarkable tuning options of the Zn-based core structure and high activity in H2O2-assisted catalytic alcohol oxidation as a representative reaction. Next, high level solution-based computational modelling of the intermediates and transition states was carried out for [Zn6Cl6(SbW9O33)(2)](12-) as a representative well-defined case. The results indicate a radical-based oxidation process with the involvement of tungsten and adjacent zinc metal centers. The {ZnnNa6-n(B-alpha-SbW9O33)(2)} series indeed efficiently catalyses alcohol oxidation via peroxotungstate intermediates, in agreement with strong spectroscopic support and other experimental evidence for the radical mechanism. Finally, the high performance of [Zn6Cl6(SbW9O33)(2)](12-) was traced back to its transformation into a highly active and robust disordered Zn/W-POM catalyst. The atomic short-range structure of this resting pre-catalyst was elucidated by RMC modelling of the experimental W-L-3 and Zn-K edge EXAFS spectra and supported with further analytical methods. We demonstrate that computational identification of the reactive sites combined with the analytical tracking of their dynamic transformations provides essential input to expedite cluster-based molecular catalyst design.
机译:催化电流经历从朝着新的动态催化剂概念分子和异构领域的模式转变。这就需要创新战略,以了解必需的催化图案和真正的催化剂,从氧化转化过程中出现的。多金属氧酸盐(POM)群集提供新贵金属无金属催化剂和其构效关系和机制有待探索极好的模型系统的不竭贮存器。在此,我们首先介绍一个新的{ZnnNa6正(B-α-SbW9O33)(2)}(N = 3-6)催化剂家族与所述锌基核心结构和高活性的显着的调整选项H2O2辅助催化醇氧化为代表的反应。接着,高层基于溶液的中间体和过渡态的计算模型是为[Zn6Cl6(SbW9O33)(2)](12),其为代表定义明确的情况下进行。结果表明与钨和锌相邻金属中心的参与基于自由基氧化过程。的{ZnnNa6正(B-α-SbW9O33)(2)}系列确实经由过氧化钨酸盐中间体有效地催化醇的氧化,在具有强光谱支持和自由基机理其他实验证据一致。最后,[Zn6Cl6(SbW9O33)(2)](12)的高性能追溯到其转变为高度活性的和强大的无序的Zn / W-POM催化剂。该静息预催化剂的原子短程结构通过实验W-L-3和Zn-K边缘EXAFS光谱的RMC建模阐明和进一步的分析方法的支持。我们证明所述反应性位点与它们的动态变换的分析跟踪组合的该计算鉴别提供了必要的输入,以加快基于簇的分子催化剂的设计。

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