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Title: Theory-guided Sn/Cu alloying for efficient CO[subscript 2] electroreduction at low overpotentials

Authors:
; ; ; ; ; ; ; ; ; ;  [1]
  1. Stanford
Publication Date:
Research Org.:
Argonne National Laboratory (ANL), Argonne, IL (United States). Advanced Photon Source (APS)
Sponsoring Org.:
DOE - BASIC ENERGY SCIENCES
OSTI Identifier:
1603144
Resource Type:
Journal Article
Journal Name:
Nat. Catalysis
Additional Journal Information:
Journal Volume: 2; Journal Issue: 01, 2019
Country of Publication:
United States
Language:
ENGLISH

Citation Formats

Zheng, Xueli, Ji, Yongfei, Tang, Jing, Wang, Jiangyan, Liu, Bofei, Steinrück, Hans-Georg, Lim, Kipil, Li, Yuzhang, Toney, Michael F., Chan, Karen, Cui, Yi, SLAC), and SSRL). Theory-guided Sn/Cu alloying for efficient CO[subscript 2] electroreduction at low overpotentials. United States: N. p., 2020. Web. doi:10.1038/s41929-018-0200-8.
Zheng, Xueli, Ji, Yongfei, Tang, Jing, Wang, Jiangyan, Liu, Bofei, Steinrück, Hans-Georg, Lim, Kipil, Li, Yuzhang, Toney, Michael F., Chan, Karen, Cui, Yi, SLAC), & SSRL). Theory-guided Sn/Cu alloying for efficient CO[subscript 2] electroreduction at low overpotentials. United States. https://doi.org/10.1038/s41929-018-0200-8
Zheng, Xueli, Ji, Yongfei, Tang, Jing, Wang, Jiangyan, Liu, Bofei, Steinrück, Hans-Georg, Lim, Kipil, Li, Yuzhang, Toney, Michael F., Chan, Karen, Cui, Yi, SLAC), and SSRL). 2020. "Theory-guided Sn/Cu alloying for efficient CO[subscript 2] electroreduction at low overpotentials". United States. https://doi.org/10.1038/s41929-018-0200-8.
@article{osti_1603144,
title = {Theory-guided Sn/Cu alloying for efficient CO[subscript 2] electroreduction at low overpotentials},
author = {Zheng, Xueli and Ji, Yongfei and Tang, Jing and Wang, Jiangyan and Liu, Bofei and Steinrück, Hans-Georg and Lim, Kipil and Li, Yuzhang and Toney, Michael F. and Chan, Karen and Cui, Yi and SLAC) and SSRL)},
abstractNote = {},
doi = {10.1038/s41929-018-0200-8},
url = {https://www.osti.gov/biblio/1603144}, journal = {Nat. Catalysis},
number = 01, 2019,
volume = 2,
place = {United States},
year = {Wed Jul 01 00:00:00 EDT 2020},
month = {Wed Jul 01 00:00:00 EDT 2020}
}

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Works referencing / citing this record:

In Situ Reconstruction of a Hierarchical Sn‐Cu/SnO x Core/Shell Catalyst for High‐Performance CO 2 Electroreduction
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A Disquisition on the Active Sites of Heterogeneous Catalysts for Electrochemical Reduction of CO 2 to Value‐Added Chemicals and Fuel
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Catalytic Mechanisms and Design Principles for Single‐Atom Catalysts in Highly Efficient CO 2 Conversion
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Platinum–copper single atom alloy catalysts with high performance towards glycerol hydrogenolysis
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Heterostructured intermetallic CuSn catalysts: high performance towards the electrochemical reduction of CO 2 to formate
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Efficient Electrosynthesis of Syngas with Tunable CO/H 2 Ratios over Zn x Cd 1− x S‐Amine Inorganic–Organic Hybrids
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Trimetallic Synergy in Intermetallic PtSnBi Nanoplates Boosts Formic Acid Oxidation
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Electrocatalytic Reduction of Gaseous CO 2 to CO on Sn/Cu‐Nanofiber‐Based Gas Diffusion Electrodes
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Partial sulfuration-induced defect and interface tailoring on bismuth oxide for promoting electrocatalytic CO 2 reduction
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Structure‐Tunable Copper–Indium Catalysts for Highly Selective CO 2 Electroreduction to CO or HCOOH
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Polyoxometalate-based electron transfer modulation for efficient electrocatalytic carbon dioxide reduction
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Current progress in electrocatalytic carbon dioxide reduction to fuels on heterogeneous catalysts
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