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等离子体加热介导的多相催化。

Heterogenous catalysis mediated by plasmon heating.

机构信息

Division of Engineering and Applied Science, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Nano Lett. 2009 Dec;9(12):4417-23. doi: 10.1021/nl902711n.

Abstract

We introduce a new method for performing and miniaturizing many types of heterogeneous catalysis involving nanoparticles. The method makes use of the plasmon resonance present in nanoscale metal catalysts to provide the necessary heat of reaction when illuminated with a low-power laser. We demonstrate our approach by reforming a flowing, liquid mixture of ethanol and water over gold nanoparticle catalysts in a microfluidic channel. Plasmon heating of the nanoparticles provides not only the heat of reaction but the means to generate both water and ethanol vapor locally over the catalysts, which in turn allows the chip and the fluid lines to remain at room temperature. The measured products of the reaction, CO(2), CO, and H(2), are consistent with catalytic steam reforming of ethanol. The approach, which we refer to as plasmon-assisted catalysis, is general and can be used with a variety of endothermic catalytic processes involving nanoparticles.

摘要

我们介绍了一种新的方法,用于进行和微型化涉及纳米粒子的多种多相催化。该方法利用纳米尺度金属催化剂中的等离子体共振,在低功率激光照射下提供必要的反应热。我们通过在微流道中的金纳米粒子催化剂上对流动的乙醇和水混合物进行重整来证明我们的方法。纳米粒子的等离子体加热不仅提供了反应热,而且还提供了在催化剂上局部产生水和乙醇蒸气的手段,这反过来又使芯片和流体管路保持在室温。反应的测量产物 CO(2)、CO 和 H(2)与乙醇的催化蒸汽重整一致。我们称之为等离子体辅助催化的方法是通用的,可以与多种涉及纳米粒子的吸热催化过程一起使用。

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