Ke Xiaoxue, Tang Changcun, Xiong Renzhi, Xiao Yanhe, Cheng Baochang, Lei Shuijin
School of Physics and Materials Science, Nanchang University, Nanchang 330031, China.
Inorg Chem. 2024 Jan 29;63(4):2157-2173. doi: 10.1021/acs.inorgchem.3c04102. Epub 2024 Jan 11.
It is an important strategy to design composite materials with a special microstructure and a tunable electronic structure through structural compatibility. In this work, a novel hexagonal/cubic ZnInS polymorphic heterophase junction with a three-dimensional multihierarchical structure is successfully constructed by in situ growth of hexagonal ZnInS nanosheets on the surface of cubic ZnInS flower-like microspheres prepared by topological chemical synthesis. On the one hand, the multihierarchical architecture provides large specific surface area, abundant active sites, and excellent light trapping capability. On the other hand, the construction of a direct S-scheme heterophase junction enables the formation of a special charge-transfer channel under the force of a built-in electric field, which not only improves the separation efficiency of carriers but also ensures the stronger reaction activity of charges. The prepared ZnInS heterophase junction composite photocatalyst exhibits greatly boosted photocatalytic efficiency in rhodamine B degradation, hexavalent chromium reduction, and water splitting for hydrogen production, which are 12.3, 6.5, and 3.1 times higher than that of pure hexagonal ZnInS and 8.1, 5.1, and 2.3 times higher than that of pure cubic ZnInS, respectively, demonstrating its significant potential for applications in energy and environmental fields.
通过结构相容性设计具有特殊微观结构和可调电子结构的复合材料是一项重要策略。在本工作中,通过在拓扑化学合成制备的立方相ZnInS花状微球表面原位生长六方相ZnInS纳米片,成功构建了一种具有三维多级结构的新型六方/立方ZnInS多相异质结。一方面,多级结构提供了大比表面积、丰富的活性位点和优异的光捕获能力。另一方面,直接S型异质结的构建使得在内部电场作用下形成特殊的电荷转移通道,这不仅提高了载流子的分离效率,还确保了电荷更强的反应活性。所制备的ZnInS异质结复合光催化剂在罗丹明B降解、六价铬还原和水分解制氢方面表现出大大提高的光催化效率,分别比纯六方相ZnInS高12.3倍、6.5倍和3.1倍,比纯立方相ZnInS高8.1倍、5.1倍和2.3倍,证明了其在能源和环境领域应用的巨大潜力。