Multimetal synergy in an iron-cobalt-nickel hydroxide electrocatalyst for electro-oxidative lignin depolymerization to produce value-added aromatic chemicals

A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol. A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhan...

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Published inChemical communications (Cambridge, England) Vol. 6; no. 73; pp. 9982 - 9985
Main Authors Li, Pengfeng, Zhang, Jiaqi, Liu, Shanshan, Lei, Fengcai, Sun, Xu, Xie, Junfeng
Format Journal Article
LanguageEnglish
Published England Royal Society of Chemistry 10.09.2024
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Abstract A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol. A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol.
AbstractList A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol. A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol.
A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol.A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol.
A ternary iron–cobalt–nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of lignin models to produce benzoic acid and phenol.
Author Zhang, Jiaqi
Xie, Junfeng
Liu, Shanshan
Sun, Xu
Lei, Fengcai
Li, Pengfeng
AuthorAffiliation Chemical Engineering and Materials Science
Shandong Normal University
Key Laboratory of Molecular and Nano Probes (Ministry of Education)
Shandong University of Aeronautics
College of Chemistry
College of Chemical Engineering and Safety
Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong
Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong
School of Chemistry and Chemical Engineering
University of Jinan
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Snippet A ternary iron-cobalt-nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of...
A ternary iron–cobalt–nickel hydroxide nanoarray catalyst was fabricated, which achieves enhanced performance towards electro-oxidative depolymerization of...
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SubjectTerms Benzoic acid
Cobalt
Depolymerization
Electrocatalysts
Iron
Lignin
Nickel compounds
Title Multimetal synergy in an iron-cobalt-nickel hydroxide electrocatalyst for electro-oxidative lignin depolymerization to produce value-added aromatic chemicals
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