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Constructing MoS_2/g-C_3N_4 heterojunction with enhanced oxygen evolution reaction activity: A theoretical insight

机译:具有增强的析氧反应活性的MoS_2 / g-C_3N_4异质结的构建:理论研究

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Developing and designing highly efficient oxygen evolution reaction (OER) electrocatalysts is full of significance to achieve complete water splitting. In this work, using density functional theory (DFT) calculations, we performed a systematic theoretical study of the OER electrocatalytic activity of MoS2/g-C3N4 heterojunction. We find that the construction of heterojunction can efficiently modify the electronic properties of MoS2 phase, facilitate electron transfer, and thereby improving OER activity. In comparison to the pristine MoS2 monolayer, the theoretical overpotential of the MoS2/g-C3N4 heterojunction was significantly reduced nearly 69% from 2.52 to 0.78 V. Such outstanding OER activity mainly originates from the electronic coupling between MoS2 and g-C3N4. Overall, the present findings not only provide a vital insight into the catalytic mechanism of the enhanced OER activity of MoS2/g-C3N4 heterojunction, but also provide a new pathway to develop high-performance OER electrocatalysts for future energy conversion applications.
机译:开发和设计高效的析氧反应(OER)电催化剂对于实现完全的水分解具有十分重要的意义。在这项工作中,我们使用密度泛函理论(DFT)计算,对MoS2 / g-C3N4异质结的OER电催化活性进行了系统的理论研究。我们发现异质结的构建可以有效地修饰MoS2相的电子性质,促进电子转移,从而提高OER活性。与原始MoS2单层相比,MoS2 / g-C3N4异质结的理论过电势从2.52 V降低了近69%。0.7出色的OER活性主要来自MoS2和g-C3N4之间的电子耦合。总体而言,目前的发现不仅为MoS2 / g-C3N4异质结OER活性增强的催化机理提供了重要的见识,而且为开发高性能OER电催化剂为未来的能量转换应用提供了一条新途径。

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