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单层 MoO 促进亚硫酸盐氧化酶模拟活性的热载流子和光热效应。

Hot Carriers and Photothermal Effects of Monolayer MoO for Promoting Sulfite Oxidase Mimetic Activity.

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, Nanotechnology Research Center, School of Materials Science & Engineering, School of Physics, Sun Yat-Sen University, Guangzhou 510275, Guangdong, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 29;12(17):19357-19368. doi: 10.1021/acsami.0c04987. Epub 2020 Apr 20.

Abstract

Local surface plasmon resonance (LSPR)-enhanced catalysis has brought a substantial amount of opportunities across various disciplines such as photocatalysis, photodetection, and photothermal therapeutics. Plasmon-induced photothermal and hot carriers effects have also been utilized to activate the enzyme-like reactions. Compared with natural enzymes, the relatively low catalytic performance of nanozymes severely hampered the potential applications in the field of biomedicine. For these issues mentioned above, herein, we demonstrate a highly efficient sulfite oxidase (SuO) mimetic performance of plasmonic monolayer MoO (ML-MoO) upon LSPR excitation. We also established that the considerable photothermal effect and the injection of hot carriers induced by LSPR are responsible for promoting the SuO activity of ML-MoO. The high transient local temperature on the surface of ML-MoO generated by the photothermal effect facilitates to impact the reaction velocity and feed the SuO-like activity, while the generation of hot carriers which are suggested as predominant effects catalyzes the oxidation of sulfite to sulfate through significantly decreasing the activation energy for the SuO-like reaction. These investigations present a contribution to the basic understanding of plasmon-enhanced enzyme-like reaction and provided an insight into the optimization of the SuO mimetic performance of nanomaterials.

摘要

局部表面等离激元共振 (LSPR) 增强催化在各个领域带来了大量的机会,如光催化、光电探测和光热治疗。等离子体诱导的光热和热载流子效应也被用于激活类酶反应。与天然酶相比,纳米酶相对较低的催化性能严重阻碍了其在生物医学领域的潜在应用。针对上述问题,本文展示了局域表面等离激元共振激发下单层氧化钼(ML-MoO)具有高效的亚硫酸盐氧化酶(SuO)模拟性能。我们还确定了 LSPR 诱导的显著光热效应和热载流子注入是促进 ML-MoO 的 SuO 活性的原因。光热效应在 ML-MoO 表面产生的高瞬态局部温度有助于影响反应速度并为 SuO 样活性提供动力,而热载流子的产生被认为是主要的催化作用,通过显著降低 SuO 样反应的活化能来催化亚硫酸盐氧化为硫酸盐。这些研究为理解等离子体增强类酶反应提供了贡献,并为优化纳米材料的 SuO 模拟性能提供了深入的了解。

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