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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >In Silico Optimization of Organic-Inorganic Hybrid Perovskites for Photocatalytic Hydrogen Evolution Reaction in Acidic Solution
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In Silico Optimization of Organic-Inorganic Hybrid Perovskites for Photocatalytic Hydrogen Evolution Reaction in Acidic Solution

机译:在酸性溶液中有机 - 无机杂交钙酯的有机 - 无机杂交钙酯的硅优化

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We previously reported the atomistic reaction mechanism for the photocatalytic hydrogen evolution reaction (HER) on the CH3NH3PbI3 organic-inorganic hybrid perovskites based on quantum mechanics calculations of the transition-state barriers, including several layers of explicit acidic solvent. Here, we extend these studies using in silico optimization to discover additional promising photocatalysts. We consider replacing (i) Pb with Sn, (ii) I with Br, and (iii) CH3NH3 cation with several organic cations, including NH2(CH)NH2 cation as the photocatalyst for HER We compared the activation barriers and reaction energies for each case. In our previous studies, we found that both H atoms of the H-2 product are extracted from surface organic cations with protons from the solution migrating along Grotthuss water chains to replace the H of the organic cations. This two-step reaction mechanism involves formation of an intermediate lead hydride bond, with the lead atoms and the surface organic cations both playing essential roles. Among the perovskites investigated here, we predict that NH2(CH)NH2PbI3 exhibits the best HER performance with a predicted 10-fold improvement in the reaction rate compared to CH3NH3PbI3. We also suggest that the lead-free tin iodide perovskites might exhibit a rate comparable to that of lead iodide perovskites with the same organic cations. However, replacing iodine by bromine significantly increases the activation barrier. We find for these lead iodide perovskites, the increased proton affinity of the surface organic cations enhances the photocatalytic efficiency, with NH2(CH)NH2 the best case examined.
机译:我们之前报道了基于过渡态屏障的量子力学计算的CH3NH3PBI3有机 - 无机杂交钙酸盐上的光催化氢进化反应(她)的原子反应机制,包括几层明确的酸性溶剂。在这里,我们使用Silico优化来扩展这些研究,以发现额外的有前途的光催化剂。我们考虑用Sn,(ii)用Br,(iii)含量的(ii),(iii)用几种有机阳离子,包括NH 2(CH)NH2阳离子作为她的光催化剂,我们将每种激活障碍和反应能量进行比较案件。在我们以前的研究中,我们发现H-2产物的H原子从表面有机阳离子中提取,来自溶液沿着麦克风水链迁移的质子,以取代有机阳离子的H.该两步反应机制涉及形成中间铅氢化物键,其中铅原子和表面有机阳离子均扮演基本作用。在此处研究的Perovskites中,我们预测NH 2(CH)NH 2 PBI3与CH 3 NH 3 PBI3相比,反应速率的预测10倍改善表现出最佳的性能。我们还表明,无铅锡碘化锡钙锌矿可能表现出与具有相同有机阳离子的铅碘化物钙酸盐的速率相当。然而,用溴取代碘显着增加了激活屏障。我们发现这些铅碘化物钙锌矿,表面有机阳离子的质子亲和力的增加提高了光催化效率,NH2(CH)NH 2最佳检查。

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