Optical super-resolution imaging has gained momentum in investigations of heterogeneous and homogeneous chemical reactions at the single-molecule level. Thanks to its exceptional spatial resolution and ability to monitor dynamic systems, much detailed information on single-molecule reaction/adsorption processes and single- particle catalytic processes has been revealed, including chemical kinetics and reaction dynamics; active-site distributions on single-particle surfaces; and size-, shape-, and facet-dependent catalytic activities of individual nanocatalysts. In this review, we provide an overview of recent advances in super-resolution chemical imaging of surface reactions.
Optical Super-Resolution Imaging of Surface Reactions / Chen, Tao; Dong, Bin; Chen, Kuangcai; Zhao, Fei; Cheng, Xiaodong; Ma, Changbei; Lee, Seungah; Zhang, Peng; Kang, Seong Ho; Ha, Ji Won; Others,. - In: CHEMICAL REVIEWS. - ISSN 0009-2665. - 117:11(2017). [10.1021/acs.chemrev.6b00673]
Optical Super-Resolution Imaging of Surface Reactions
Zhang, Peng;
2017
Abstract
Optical super-resolution imaging has gained momentum in investigations of heterogeneous and homogeneous chemical reactions at the single-molecule level. Thanks to its exceptional spatial resolution and ability to monitor dynamic systems, much detailed information on single-molecule reaction/adsorption processes and single- particle catalytic processes has been revealed, including chemical kinetics and reaction dynamics; active-site distributions on single-particle surfaces; and size-, shape-, and facet-dependent catalytic activities of individual nanocatalysts. In this review, we provide an overview of recent advances in super-resolution chemical imaging of surface reactions.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2995208