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载镍树枝状等离子体胶体金:强制等离子体介导的光催化CO加氢反应

Nickel-Laden Dendritic Plasmonic Colloidosomes of Black Gold: Forced Plasmon Mediated Photocatalytic CO Hydrogenation.

作者信息

Verma Rishi, Belgamwar Rajesh, Chatterjee Pratip, Bericat-Vadell Robert, Sa Jacinto, Polshettiwar Vivek

机构信息

Department of Chemical Sciences, Tata Institute of Fundamental Research (TIFR), Mumbai 400005, India.

Department of Chemistry-Ångström Laboratory, Uppsala University, Uppsala 75120, Sweden.

出版信息

ACS Nano. 2023 Mar 14;17(5):4526-4538. doi: 10.1021/acsnano.2c10470. Epub 2023 Feb 13.

Abstract

In this work, we have designed and synthesized nickel-laden dendritic plasmonic colloidosomes of Au (black gold-Ni). The photocatalytic CO hydrogenation activities of black gold-Ni increased dramatically to the extent that measurable photoactivity was only observed with the black gold-Ni catalyst, with a very high photocatalytic CO production rate (2464 ± 40 mmol g h) and 95% selectivity. Notably, the reaction was carried out in a flow reactor at low temperature and atmospheric pressure without external heating. The catalyst was stable for at least 100 h. Ultrafast transient absorption spectroscopy studies indicated indirect hot-electron transfer from the black gold to Ni in less than 100 fs, corroborated by a reduction in Au-plasmon electron-phonon lifetime and a bleach signal associated with Ni d-band filling. Photocatalytic reaction rates on excited black gold-Ni showed a superlinear power law dependence on the light intensity, with a power law exponent of 5.6, while photocatalytic quantum efficiencies increased with an increase in light intensity and reaction temperature, which indicated the hot-electron-mediated mechanism. The kinetic isotope effect (KIE) in light (1.91) was higher than that in the dark (∼1), which further indicated the electron-driven plasmonic CO hydrogenation. Black gold-Ni catalyzed CO hydrogenation in the presence of an electron-accepting molecule, methyl--benzoquinone, reduced the CO production rate, asserting the hot-electron-mediated mechanism. Operando diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) showed that CO hydrogenation took place by a direct dissociation path via linearly bonded Ni-CO intermediates. The outstanding catalytic performance of black gold-Ni may provide a way to develop plasmonic catalysts for CO reduction and other catalytic processes using black gold.

摘要

在这项工作中,我们设计并合成了负载镍的金树枝状等离子体胶体囊泡(黑金-Ni)。黑金-Ni的光催化CO加氢活性显著提高,以至于仅在黑金-Ni催化剂上观察到可测量的光活性,其具有非常高的光催化CO生成速率(2464±40 mmol g⁻¹ h⁻¹)和95%的选择性。值得注意的是,该反应在流动反应器中于低温和大气压下进行,无需外部加热。该催化剂至少稳定100小时。超快瞬态吸收光谱研究表明,在不到100飞秒的时间内,从黑金到Ni发生了间接热电子转移,这通过金等离子体电子-声子寿命的缩短和与Ni d带填充相关的漂白信号得到了证实。激发态黑金-Ni上的光催化反应速率对光强呈现超线性幂律依赖关系,幂律指数为5.6,而光催化量子效率随光强和反应温度的升高而增加,这表明了热电子介导的机制。光照下的动力学同位素效应(KIE)(1.91)高于黑暗中的(约1),这进一步表明了电子驱动的等离子体CO加氢。在电子受体分子甲基苯醌存在下,黑金-Ni催化的CO加氢降低了CO生成速率,证实了热电子介导的机制。原位漫反射红外傅里叶变换光谱(DRIFTS)表明,CO加氢通过线性键合的Ni-CO中间体的直接解离路径发生。黑金-Ni出色的催化性能可能为开发用于CO还原和其他使用黑金的催化过程的等离子体催化剂提供一条途径。

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