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Gengfeng Zheng

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Articles 153
Citations 2343
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Recent Articles
1.
Xue Y, Zhang L, Kuang M, Zheng G
ACS Appl Mater Interfaces . 2025 Feb; 17(8):11375-11388. PMID: 39957150
The renewable electricity-driven CO and CO reduction represents a promising approach for reducing the CO footprint toward carbon neutrality. Substantial research developments have been achieved in designing catalysts and reaction...
2.
Xue Y, Chen L, Zhang L, Zheng G, Zhang X, Zhou Z
Chem Sci . 2025 Jan; 16(7):3323-3328. PMID: 39845876
The exceptional oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) performances of core-shell catalysts are well documented, yet their activity and durability origins have been interpreted only based on...
3.
Zhang Q, Yang C, Chen Y, Yan Y, Kan M, Wang H, et al.
Angew Chem Int Ed Engl . 2024 Dec; 64(7):e202419282. PMID: 39660632
Photocatalytic CH oxidation to ethanol with high selectivity is attractive but substantially challenging. The activation of inert C-H bonds at ambient conditions requires highly reactive oxygen species like hydroxyl radicals...
4.
Deng H, Liu T, Zhao W, Wang J, Zhang Y, Zhang S, et al.
Nat Commun . 2024 Nov; 15(1):9706. PMID: 39521774
CO electroreduction is a potential pathway to achieve net-zero emissions in the chemical industry. Yet, CO loss, resulting from (bi)carbonate formation, renders the process energy-intensive. Acidic environments can address the...
5.
Yin Y, Lv X, Lv Z, Fang L, Fan T, Wang M, et al.
ChemSusChem . 2024 Oct; 18(4):e202401760. PMID: 39375533
The conversion of 5-hydroxymethylfurfural (HMF) to 2,5-diformylfuran (DFF) is a promising approach for enhancing biomass utilization. Nevertheless, traditional methods using noble metal catalysts face challenges due to high costs and...
6.
Yan Y, Liu K, Yang C, Chen Y, Lv X, Hu C, et al.
Small . 2024 Oct; 20(50):e2406345. PMID: 39358961
The electrocatalytic carbon dioxide or carbon monoxide reduction reaction (CORR or CORR) features a sustainable method for reducing carbon emissions and producing value-added chemicals. However, the generation of C products...
7.
Hao S, Xue Y, Peng C, Mi Y, Yan Y, Wang M, et al.
J Am Chem Soc . 2024 Sep; 146(37):25870-25877. PMID: 39231938
The selective oxidation of methane (CH) features attractive potentials in both mitigating global warming and producing value-added chemicals. However, due to the short-life and unpaired concentrations of reactive intermediates (such...
8.
Tang S, Xie M, Yu S, Zhan X, Wei R, Wang M, et al.
Nat Commun . 2024 Aug; 15(1):6932. PMID: 39138150
Given the growing emphasis on energy efficiency, environmental sustainability, and agricultural demand, there's a pressing need for decentralized and scalable ammonia production. Converting nitrate ions electrochemically, which are commonly found...
9.
Zhou C, Zhang Y, Xie C, Bai J, Li J, Zhang H, et al.
Environ Sci Technol . 2024 Aug; 58(33):14940-14948. PMID: 39105779
Low concentrations of nitrate (NO) widely exist in wastewater, post-treated wastewater, and natural environments; its further disposal is a challenge but meaningful for its discharge goals. Electroreduction of NO is...
10.
Ji Y, Lv X, Wei R, Guan A, Yang C, Yan Y, et al.
Angew Chem Int Ed Engl . 2024 Jul; 63(43):e202411194. PMID: 38995549
The electrochemical reduction of CO or CO into C products has mostly been focused on Cu-based catalysts. Although Ag has also been predicted as a possible catalyst for the CO-to-C...