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Emerging interstitial/substitutional modification of Pd-based nanomaterials with nonmetallic elements for electrocatalytic applications

机译:新兴间隙/置换修改与非金属Pd-based纳米材料元素electrocatalytic应用程序

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Palladium (Pd)-based nanomaterials have been identified as potential candidates for various types of electrocatalytic reaction, but most of them typically exhibit unsatisfactory performances. Recently, extensive theoretical and experimental studies have demonstrated that the interstitial/substitutional modification of Pd-based nanomaterials with nonmetallic atoms (H, B, C, N, P, S) has a significant impact on their electronic structure and thus leads to the rapid development of one kind of promising catalyst for various electrochemical reactions. Considering the remarkable progress in this area, we highlight the most recent progress regarding the innovative synthesis and advanced characterization methods of nonmetallic atom-doped Pd-based nanomaterials and provide insights into their electrochemical applications. What's more, the unique structure- and component-dependent electrochemical performance and the underlying mechanisms are also discussed. Furthermore, a brief conclusion about the recent progress achieved in this field as well as future perspectives and challenges are provided.
机译:钯的纳米材料确定为各种潜在的候选人类型的electrocatalytic反应,但大多数他们通常表现出不满意表演。实验研究证明了间质/置换的修改Pd-based纳米材料与非金属原子(H,B, C, N, P, S)对他们产生重大影响电子结构,从而导致的迅速一种有前途的催化剂的发展各种电化学反应。在这一领域取得了显著进展,我们突出最近的进展有关创新的合成和先进非金属的表征方法atom-doped Pd-based纳米材料并提供洞察他们的电化学应用程序。更重要的是,独特的结构- - -component-dependent电化学性能和潜在的机制进行了讨论。此外,最近的一个简短的结论在这个领域已经取得的进展以及未来视角和挑战。

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