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  4. Impregnated nanoporous copper as catalysts for the electrocatalytic hydrogenation of furfural
 
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Impregnated nanoporous copper as catalysts for the electrocatalytic hydrogenation of furfural

Journal
Materials Today Sustainability
Journal Volume
31
Start Page
101154
ISSN
2589-2347
Date Issued
2025-09
Author(s)
Lin, Wei-Ting
Lee, Yu-Shuo
Wen-Yueh Yu  
I-Chung Cheng  
DOI
10.1016/j.mtsust.2025.101154
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-105007948110&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/730860
Abstract
Electrochemical hydrogenation and hydrogenolysis (ECH) offer a sustainable approach for converting biomass-derived furfural (FF) into valuable products such as furfuryl alcohol (FOL) and 2-methylfuran (MF). However, challenges remain due to low Faradaic efficiency (FE), limited production rates, and competing hydrogen evolution reactions. In this study, nanoporous copper (NPC) was synthesized via dealloying of CuAl2 to serve as an efficient catalyst support. Structural characterization confirmed its high surface area and distinct FCC crystalline facets. Compared to commercial Cu powder, NPC exhibited a 16-fold increase in electrochemical surface area, resulting in enhanced catalytic performance. At −1.00 V, the FE for FOL increased from 43.2 % to 83.0 %, HER was suppressed from 12.7 % to 0.6 %, and product yields improved by 4–6 times. Furthermore, bimetallic catalysts with 10 wt% Co, Ni, and Pd supported on NPC were investigated. Notably, 10Ni/NPC formed a Cu–Ni solid solution with FCC structure and significantly improved MF selectivity by 19.1 %, likely due to a Ni/Cu(111) surface favoring the hydrodeoxygenation pathway. These findings highlight the effectiveness of NPC in enhancing the ECH of FF and its potential as a tunable platform for bimetallic catalyst design.
Subjects
Electrochemical hydrogenation
Furfural
Impregnation
Nanoporous copper
SDGs

[SDGs]SDG7

Publisher
Elsevier BV
Type
journal article

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