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Surface Modification for Promoting Durable, Efficient, and Selective Electrocatalysts

机译:促进耐用,高效和选择性电催化剂的表面改性

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Intensive research into the design of catalysts involved in energy conversion and fuel cell technologies has allowed great progress in the field. However, durable, efficient and selective electrocatalytic systems for the activation of fuel molecules at the lowest cost are still needed. The most developed strategies consist of tailoring the shape, size and composition of metallic nanomaterials. Yet, deliberate surface modification of the catalysts should be considered as a promising alternative approach. The functionalization of metallic catalysts with organic ligands has been recently demonstrated to promote high catalytic activity. This Review focuses on the functionalization of metallic or alloy catalysts with organic ligands, showing the impact of the surface modification for different materials and different reactions. Hybrid systems based on this alternative strategy could contribute to the elaboration of cutting-edge systems for electrocatalysis.
机译:对涉及能量转换和燃料电池技术涉及的催化剂设计的密集研究允许在该领域取得巨大进展。 然而,仍然需要耐用,有效和选择性的电催化系统以最低成本激活燃料分子。 最开发的策略包括剪裁金属纳米材料的形状,尺寸和组成。 然而,催化剂的刻意表面改性应被视为有希望的替代方法。 最近已经证明了用有机配体的金属催化剂的官能化以促进高催化活性。 该综述侧重于金属或合金催化剂与有机配体的官能化,显示出不同材料和不同反应的表面改性的影响。 基于该替代策略的混合系统可能有助于制定用于电常见的尖端系统。

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