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One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells

A one-step strategy for synthesizing eggplant-derived hierarchical porous graphitic biochar was proposed herein. Potassium trioxalatoferrate(iii) trihydrate (K(3)[Fe(C(2)O(4))(3)]·3H(2)O) was used to achieve synchronous carbonization and graphitization. Compared with the common two-step synthesis me...

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Autores principales: Zha, Zhengtai, Zhang, Zhi, Xiang, Ping, Zhu, Hongyi, Zhou, Bangmei, Sun, Zhulong, Zhou, Shun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693568/
https://www.ncbi.nlm.nih.gov/pubmed/35423679
http://dx.doi.org/10.1039/d0ra09976g
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author Zha, Zhengtai
Zhang, Zhi
Xiang, Ping
Zhu, Hongyi
Zhou, Bangmei
Sun, Zhulong
Zhou, Shun
author_facet Zha, Zhengtai
Zhang, Zhi
Xiang, Ping
Zhu, Hongyi
Zhou, Bangmei
Sun, Zhulong
Zhou, Shun
author_sort Zha, Zhengtai
collection PubMed
description A one-step strategy for synthesizing eggplant-derived hierarchical porous graphitic biochar was proposed herein. Potassium trioxalatoferrate(iii) trihydrate (K(3)[Fe(C(2)O(4))(3)]·3H(2)O) was used to achieve synchronous carbonization and graphitization. Compared with the common two-step synthesis method, this one-step strategy is more efficient, economical, and green. The eggplant-derived biochar with K(3)[Fe(C(2)O(4))(3)]·3H(2)O activation prepared at 800 °C (referred to as EPGC-800-2) exhibited a hierarchical porous structure with a large specific surface area (1137 m(2) g(−1)) and high graphitization degree. The EPGC-800-2 catalyst possessed good electrochemical performance in neutral medium, with an onset potential of 0.766 V and half-wave potential of 0.591 V (vs. RHE), compared with the Pt/C cathode (0.740 V and 0.583 V vs. RHE, respectively). Moreover, a microbial fuel cell employing EPGC-800-2 had a maximum power density of 667 mW m(−2), which is superior to Pt/C catalyst (621 mW m(−2)). The work provided a promising way to prepare hierarchical porous graphitic biochar as an excellent electrochemical catalyst for microbial fuel cells.
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spelling pubmed-86935682022-04-13 One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells Zha, Zhengtai Zhang, Zhi Xiang, Ping Zhu, Hongyi Zhou, Bangmei Sun, Zhulong Zhou, Shun RSC Adv Chemistry A one-step strategy for synthesizing eggplant-derived hierarchical porous graphitic biochar was proposed herein. Potassium trioxalatoferrate(iii) trihydrate (K(3)[Fe(C(2)O(4))(3)]·3H(2)O) was used to achieve synchronous carbonization and graphitization. Compared with the common two-step synthesis method, this one-step strategy is more efficient, economical, and green. The eggplant-derived biochar with K(3)[Fe(C(2)O(4))(3)]·3H(2)O activation prepared at 800 °C (referred to as EPGC-800-2) exhibited a hierarchical porous structure with a large specific surface area (1137 m(2) g(−1)) and high graphitization degree. The EPGC-800-2 catalyst possessed good electrochemical performance in neutral medium, with an onset potential of 0.766 V and half-wave potential of 0.591 V (vs. RHE), compared with the Pt/C cathode (0.740 V and 0.583 V vs. RHE, respectively). Moreover, a microbial fuel cell employing EPGC-800-2 had a maximum power density of 667 mW m(−2), which is superior to Pt/C catalyst (621 mW m(−2)). The work provided a promising way to prepare hierarchical porous graphitic biochar as an excellent electrochemical catalyst for microbial fuel cells. The Royal Society of Chemistry 2021-01-04 /pmc/articles/PMC8693568/ /pubmed/35423679 http://dx.doi.org/10.1039/d0ra09976g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zha, Zhengtai
Zhang, Zhi
Xiang, Ping
Zhu, Hongyi
Zhou, Bangmei
Sun, Zhulong
Zhou, Shun
One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
title One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
title_full One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
title_fullStr One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
title_full_unstemmed One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
title_short One-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
title_sort one-step preparation of eggplant-derived hierarchical porous graphitic biochar as efficient oxygen reduction catalyst in microbial fuel cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693568/
https://www.ncbi.nlm.nih.gov/pubmed/35423679
http://dx.doi.org/10.1039/d0ra09976g
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