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Zinc ions modified InP quantum dots for enhanced photocatalytic hydrogen evolution from hydrogen sulfide

机译:锌离子改性InP量子点以增强硫化氢的增强光催化氢气进化

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Through direct addition of inorganic zinc ions into the solution of indium phosphide quantum dots (InP QDs) at ambient environment, we here present a facile but effective method to modify InP QDs for photocatalytic hydrogen evolution from hydrogen sulfide (H2S). X-ray diffraction patterns and transmission electron microscopic images demonstrate that zinc ions have no significant influence on the crystal structure and morphology of InP QDs, while X-ray photoemission spectra and UV-Vis diffuse and reflectance spectra indicate that zinc ions mainly adsorbed on the surface of InP QDs. Photocatalytic results show the average hydrogen evolution rate has been enhanced to 2.9 times after modification and H2S has indeed involves in the hydrogen evolution process. Steady-state and transient photoluminescence spectra prove that zinc ions could effectively eliminate the surface traps on InP QDs, which is crucial to suppress the recombination of charge carriers. In addition, the electrostatic interaction between zinc ions and the surface sulfide from InP QDs could mitigate the repulsion between QDs and sulfide/hydrosulfide, which may promote the surface oxidative reaction during photocatalysis. This work avoids the traditional harsh and complicated operations required for surface passivation of QDs, which offers a convenient way for optimization of QDs in photocatalysis. (C) 2020 Elsevier Inc. All rights reserved.
机译:通过将无机锌离子直接加入到环境环境下磷化铟量子点(INP QDS)的溶液中,我们在此提出了一种容易但有效的方法来改变来自硫化氢(H2S)的光催化氢析出的InP QD。 X射线衍射图案和透射电子显微镜图像表明,锌离子对INP QD的晶体结构和形态没有显着影响,而X射线照相体谱和UV-VI扩散和反射光谱表明锌离子主要吸附在锌离子上INP QD的表面。光催化结果表明,改性后,平均氢进化速率已得到增强至2.9倍,但H2S确实涉及氢进化过程。稳态和瞬态光致发光光谱证明锌离子可以有效地消除INP QDS上的表面捕集,这对于抑制电荷载体的重组至关重要。另外,来自INP QD的锌离子和表面硫化物之间的静电相互作用可以减轻QDS和硫化物/氢硫化物之间的排斥,这可以在光催化期间促进表面氧化反应。这项工作避免了QDS表面钝化所需的传统苛刻和复杂的操作,为光催化在光催化中优化QDS提供了一种方便的方法。 (c)2020 Elsevier Inc.保留所有权利。

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