Variation of flatband potential of oxide nanocrystalline particles with core-shell structured semiconductor-MgO composites

J. Bandara, U. W. Pradeep
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引用次数: 4

Abstract

SnO 2 thin films and particles show feeble solar cell performance and poor photocatalytic activity respectively. It has been reported that coating of a thin MgO layer on SnO 2 particles results in enhancement of both solar cell performance and catalytic activities. The promoting effect of MgO layer was owing to barrier effect where MgO acts as a barrier layer for charge recombination. We noticed negative shift of flatband (FB) potential of SnO 2 with the increase of pH values and coating of a thin MgO layer on SnO 2 particles. It is shown how the negative shift in FB potential may contribute to enhance the solar cell efficiencies and photocatalytic activity in addition to the barrier effect of MgO layer.
氧化纳米晶粒子与核壳结构半导体-氧化镁复合材料的平带电位变化
sno2薄膜和颗粒的太阳能电池性能较差,光催化活性较差。有报道称,在二氧化钛颗粒上涂覆一层薄薄的氧化镁层,可以提高太阳能电池的性能和催化活性。MgO层的促进作用是由于势垒效应,MgO作为电荷复合的势垒层。我们发现,随着pH值的增加和在sno2颗粒上包覆MgO薄层,sno2的平带电位(FB)呈负移动。结果表明,除了MgO层的阻挡作用外,FB电位的负移可能有助于提高太阳能电池的效率和光催化活性。
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