Literature DB >> 23521598

Plasmonic harvesting of light energy for Suzuki coupling reactions.

Feng Wang1, Chuanhao Li, Huanjun Chen, Ruibin Jiang, Ling-Dong Sun, Quan Li, Jianfang Wang, Jimmy C Yu, Chun-Hua Yan.   

Abstract

The efficient use of solar energy has received wide interest due to increasing energy and environmental concerns. A potential means in chemistry is sunlight-driven catalytic reactions. We report here on the direct harvesting of visible-to-near-infrared light for chemical reactions by use of plasmonic Au-Pd nanostructures. The intimate integration of plasmonic Au nanorods with catalytic Pd nanoparticles through seeded growth enabled efficient light harvesting for catalytic reactions on the nanostructures. Upon plasmon excitation, catalytic reactions were induced and accelerated through both plasmonic photocatalysis and photothermal conversion. Under the illumination of an 809 nm laser at 1.68 W, the yield of the Suzuki coupling reaction was ~2 times that obtained when the reaction was thermally heated to the same temperature. Moreover, the yield was also ~2 times that obtained from Au-TiOx-Pd nanostructures under the same laser illumination, where a 25-nm-thick TiOx shell was introduced to prevent the photocatalysis process. This is a more direct comparison between the effect of joint plasmonic photocatalysis and photothermal conversion with that of sole photothermal conversion. The contribution of plasmonic photocatalysis became larger when the laser illumination was at the plasmon resonance wavelength. It increased when the power of the incident laser at the plasmon resonance was raised. Differently sized Au-Pd nanostructures were further designed and mixed together to make the mixture light-responsive over the visible to near-infrared region. In the presence of the mixture, the reactions were completed within 2 h under sunlight, while almost no reactions occurred in the dark.

Entities:  

Year:  2013        PMID: 23521598     DOI: 10.1021/ja310501y

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  28 in total

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9.  Design, Fabrication and Characterization of Pressure-Responsive Films Based on The Orientation Dependence of Plasmonic Properties of Ag@Au Nanoplates.

Authors:  Li-Shun Fu; Wen-Shou Wang; Cheng-Yan Xu; Yao Li; Liang Zhen
Journal:  Sci Rep       Date:  2017-05-10       Impact factor: 4.379

10.  Light effect on Click reaction: Role of photonic quantum dot catalyst.

Authors:  Debkumar Nandi; Abu Taher; Rafique Ul Islam; Meenakshi Choudhary; Samarjeet Siwal; Kaushik Mallick
Journal:  Sci Rep       Date:  2016-09-13       Impact factor: 4.379

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