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Oxysulfide Semiconductors for Photocatalytic Overall Water Splitting with Visible Light

机译:用于光催化的氧化氢半导体与可见光的光催化整体水分分裂

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Photocatalytic overall water splitting by sulfide-based materials is a great challenge because of the poor resilience of such materials against hole oxidation. In a recent study, Domen and co-workers developed an innovative strategy to stabilize sulfide-based photocatalysts by hybridizing S 3p with O 2p orbitals to produce oxysulfides in which S2- is stable. Further surface engineering of the oxysulfides with dual co-catalysts promoted charge separation and interface transfer, thus reducing the charge build-up that inhibits photocorrosion. The pH value of the reaction mixture is a critical consideration for achieving efficient stoichiometric H-2 and O-2 evolution by these oxysulfide photocatalysts.
机译:由于硫化物基材料的光催化整体水分是一个巨大的挑战,因为这种材料对空穴氧化的难度差。 在最近的一项研究中,多国和同事通过将S 3P与O 2P轨道杂交以产生氧硫化物,制定了一种稳定基于硫化物的光催化剂的创新策略,以产生S2-稳定的氧硫化物。 具有双助催化剂的氧硫化物的进一步表面工程促进了电荷分离和界面转移,从而减少了抑制光腐蚀的电荷积聚。 反应混合物的pH值是通过这些氧硫化物光催化剂实现有效化学计量的H-2和O-2演化的致考虑因素。

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