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Observation of Structure Evolution and Reaction Intermediates at the Gate-tunable Suspended Graphene/Electrolyte Interface
by
You-Bo, Ma
, Collaborative Innovation Center of Advanced Microstructures
, Xu, Ying
, Shan-Shan, Yang
, Gu, Feng
, Chuan-Shan Tian
in
Electrodes
/ Electrolysis
/ Graphene
/ Graphical user interface
/ Hydrogen evolution reactions
/ Reaction intermediates
/ Reaction kinetics
/ Substrates
2022
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Observation of Structure Evolution and Reaction Intermediates at the Gate-tunable Suspended Graphene/Electrolyte Interface
by
You-Bo, Ma
, Collaborative Innovation Center of Advanced Microstructures
, Xu, Ying
, Shan-Shan, Yang
, Gu, Feng
, Chuan-Shan Tian
in
Electrodes
/ Electrolysis
/ Graphene
/ Graphical user interface
/ Hydrogen evolution reactions
/ Reaction intermediates
/ Reaction kinetics
/ Substrates
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Observation of Structure Evolution and Reaction Intermediates at the Gate-tunable Suspended Graphene/Electrolyte Interface
by
You-Bo, Ma
, Collaborative Innovation Center of Advanced Microstructures
, Xu, Ying
, Shan-Shan, Yang
, Gu, Feng
, Chuan-Shan Tian
in
Electrodes
/ Electrolysis
/ Graphene
/ Graphical user interface
/ Hydrogen evolution reactions
/ Reaction intermediates
/ Reaction kinetics
/ Substrates
2022
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Observation of Structure Evolution and Reaction Intermediates at the Gate-tunable Suspended Graphene/Electrolyte Interface
Paper
Observation of Structure Evolution and Reaction Intermediates at the Gate-tunable Suspended Graphene/Electrolyte Interface
2022
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Overview
Graphene serves as an ideal platform to investigate the microscopic structure and reaction kinetics at the graphitic electrode interfaces. However, graphene is susceptible to various extrinsic factors, e.g. substrate, causing much confusion and controversy. Hereby we have obtained cm-sized substrate-free monolayer graphene suspended on electrolyte surface with gate tunability. Using sum-frequency spectroscopy, we have observed the structural evolution versus the gate voltage at the graphene/water interface. The Stern layer structure is invariant within the water electrolysis window, but undergoes drastic change when switching on the electrochemical reactions. The electrode is turned from hydrophobic to hydrophilic near the onset of hydrogen evolution reaction due to hydrogen adsorption. The large-size suspended pristine graphene offers a new platform to unravel the microscopic processes at the graphitic electrode interfaces.
Publisher
Cornell University Library, arXiv.org
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