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平面或波纹状的石墨相氮化碳与二氧化钛结合是否表现出更好的光催化性能?

Whether planar or corrugated graphitic carbon nitride combined with titanium dioxide exhibits better photocatalytic performance?

作者信息

Ha Nguyen Thi Thu, Be Pham Thi, Lan Phung Thi, Mo Nguyen Thi, Cam Le Minh, Ha Nguyen Ngoc

机构信息

Faculty of Chemistry, Hanoi National University of Education 136 Xuan Thuy Str. Hanoi Vietnam

Faculty of Natural Science and Technology, Taynguyen University Daklak Vietnam.

出版信息

RSC Adv. 2021 May 5;11(27):16351-16358. doi: 10.1039/d1ra01237a. eCollection 2021 Apr 30.

Abstract

The density functional theory method was performed to study the electronic structures of planar (pGN), corrugated (cGN) graphitic carbon nitride and their interactions with titanium dioxide cluster (TiO). The transfer of photoinduced electrons was analyzed and electronic excitations were calculated. The obtained results show that cGN is thermodynamically more stable than pGN. cGN chemically interacts with titanium dioxide clusters, while the interaction between pGN and the cluster is assigned to physical nature. The combination of cGN and pGN with (TiO) reduces the energy of the first excited states compared to that of the pure substances. The photocatalytic activities were estimated based on hypotheses on the location of the reduction and oxidation sites, the distance between the photoinduced holes and electrons and the electron density of molecular orbitals involved in the excitation. cGN/TiO is predicted to have a higher photocatalytic activity than pGN/TiO.

摘要

采用密度泛函理论方法研究了平面(pGN)、波纹状(cGN)石墨相氮化碳的电子结构及其与二氧化钛团簇(TiO)的相互作用。分析了光致电子转移并计算了电子激发。所得结果表明,cGN在热力学上比pGN更稳定。cGN与二氧化钛团簇发生化学相互作用,而pGN与团簇之间的相互作用则属于物理性质。与纯物质相比,cGN和pGN与(TiO)的结合降低了第一激发态的能量。基于还原和氧化位点的位置、光致空穴与电子之间的距离以及激发过程中涉及的分子轨道的电子密度等假设,对光催化活性进行了评估。预测cGN/TiO比pGN/TiO具有更高的光催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02d2/9030072/ab6e730019df/d1ra01237a-f1.jpg

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