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控制金属有机框架衍生的0D-2D范德华结构的界面电荷极化作为双功能氧电催化的独特策略

Controlling the Interfacial Charge Polarization of MOF-Derived 0D-2D vdW Architectures as a Unique Strategy for Bifunctional Oxygen Electrocatalysis.

作者信息

Ahsan Md Ariful, He Tianwei, Eid Kamel, Abdullah Aboubakr M, Sanad Mohamed Fathi, Aldalbahi Ali, Alvarado-Tenorio Bonifacio, Du Aijun, Puente Santiago Alain R, Noveron Juan C

机构信息

Department of Chemistry and Biochemistry, University of Texas at El Paso, El Paso, Texas 79968, United States.

Nanosystems Engineering Research Center for Nanotechnology-Enabled Water Treatment, Houston, Texas 77005, United States.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 26;14(3):3919-3929. doi: 10.1021/acsami.1c17283. Epub 2022 Jan 11.

Abstract

The design of alternative earth-abundant van der Waals (vdW) nanoheterostructures for bifunctional oxygen evolution/reduction (OER/ORR) electrocatalysis is of paramount importance to fabricate energy-related devices. Herein, we report a simple metal-organic framework (MOF)-derived synthetic strategy to fabricate low-dimensional (LD) nanohybrids formed by zero-dimensional (0D) ZrO nanoparticles (NPs) and heteroatom-doped two-dimensional (2D) carbon nanostructures. The 2D platforms controlled the electronic structures of interfacial Zr atoms, thus producing optimized electron polarization for boron and nitrogen-doped carbon (BCN)/ZrO nanohybrids. X-ray photoelectron spectroscopy (XPS) and theoretical studies revealed the key role of the synergistic couple effect of boron (B) and nitrogen (N) in interfacial electronic polarization. The BCN/ZrO nanohybrid showed excellent bifunctional electrocatalytic activity, delivering an overpotential (η) of 301 mV to reach a current density of 10 mA-cm for the OER process and a half-wave potential () of 0.85 V vs reversible hydrogen electrode (RHE) for the ORR process, which are comparable to the state-of-the-art LD nanohybrids. Furthermore, BCN/ZrO also showed competitive performances for water-splitting and zinc-air battery devices. This work establishes a new route to fabricate highly efficient multifunctional electrocatalysts by tuning the electronic polarization properties of 0D-2D electrochemical interfaces.

摘要

设计用于双功能析氧/还原(OER/ORR)电催化的替代性地球丰富的范德华(vdW)纳米异质结构对于制造能量相关器件至关重要。在此,我们报道了一种简单的金属有机框架(MOF)衍生的合成策略,以制备由零维(0D)ZrO纳米颗粒(NPs)和杂原子掺杂的二维(2D)碳纳米结构形成的低维(LD)纳米杂化物。二维平台控制了界面Zr原子的电子结构,从而为硼和氮掺杂的碳(BCN)/ZrO纳米杂化物产生了优化的电子极化。X射线光电子能谱(XPS)和理论研究揭示了硼(B)和氮(N)的协同耦合效应在界面电子极化中的关键作用。BCN/ZrO纳米杂化物表现出优异的双功能电催化活性,在OER过程中达到10 mA-cm电流密度时的过电位(η)为301 mV,在ORR过程中相对于可逆氢电极(RHE)的半波电位()为0.85 V,这与最先进的LD纳米杂化物相当。此外,BCN/ZrO在水分解和锌空气电池器件中也表现出有竞争力的性能。这项工作通过调节0D-2D电化学界面的电子极化特性,建立了一条制备高效多功能电催化剂的新途径。

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