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首页> 外文期刊>RSC Advances >Seawater splitting for hydrogen evolution by robust electrocatalysts from secondary?M (M = Cr, Fe, Co, Ni, Mo) incorporated Pt
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Seawater splitting for hydrogen evolution by robust electrocatalysts from secondary?M (M = Cr, Fe, Co, Ni, Mo) incorporated Pt

机译:强大的电催化剂从次要的M(M = Cr,Fe,Co,Ni,Mo)中掺入Pt的海水裂解产生氢气

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Water splitting is a promising technique for clean hydrogen energy harvesting. The creation of cost-effective electrocatalysts with improved hydrogen evolution reaction (HER) activity and stability is crucial in realizing persistent hydrogen evolution by reducing the reaction overpotential and minimizing energy consumption. Herein, we present the preparation of alloyed PtM (M = Cr, Fe, Co, Ni, Mo) modified titanium (Ti) mesh by a simple electrodeposition method, aiming at hydrogen generation from seawater splitting. The preliminary results indicate that the Ti/PtM electrodes feature markedly reduced onset overpotentials and Tafel slopes as well as significantly increased exchange current densities compared with pristine Pt electrodes, arising from the incorporation of secondary M atoms into the Pt lattice for alloying effects. Moreover, the competitive dissolution reaction between guest M species to Pt with Cl _(2) in seawater is beneficial for enhancing the long-term stability of resultant PtM alloy electrodes. The optimized PtMo alloy electrode maintains 91.13% of the initial current density upon 172 h operation in real seawater, making it promising in practical applications.
机译:水分解是用于清洁氢气能量收集的有前途的技术。通过降低反应超电势并最大程度地减少能耗,创建具有改善的析氢反应(HER)活性和稳定性的经济高效的电催化剂对于实现持久的析氢至关重要。本文中,我们旨在通过一种简单的电沉积方法制备合金化的PtM(M = Cr,Fe,Co,Ni,Mo)改性的钛(Ti)筛网,旨在从海水中分解产生氢。初步结果表明,与原始Pt电极相比,Ti / PtM电极具有明显降低的起始过电势和Tafel斜率以及显着增加的交换电流密度,这是由于将次生M原子掺入Pt晶格中以产生合金作用。此外,客体M物种之间的竞争性溶解反应与Cl_(2)在海水中对Pt的竞争性溶解反应有利于增强所得PtM合金电极的长期稳定性。经过优化的PtMo合金电极在实际海水中运行172 h后,可保持初始电流密度的91.13%,使其在实际应用中很有希望。

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