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Wiebren de Jong

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Articles 14
Citations 88
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Recent Articles
1.
Mohajeri M, Shanbhag S, Trasias E, Mousazadeh F, de Jong W, Phadke S
Ind Eng Chem Res . 2025 Feb; 64(5):2801-2815. PMID: 39935944
The recent interest in the production of green hydrogen through water electrolysis is hampered by its high cost when compared to steam methane reforming. To overcome this disadvantage, some studies...
2.
Cutz L, Bias N, Al-Naji M, de Jong W
Sci Rep . 2025 Jan; 15(1):112. PMID: 39747213
An urgent ecological issue is the threat posed by invasive species, which are becoming more widespread especially in Africa. These encroachments damage ecosystems, pose a threat to biodiversity, and outcompete...
3.
Izelaar B, Ramdin M, Vlierboom A, Perez-Fortes M, van der Slikke D, Sajeev Kumar A, et al.
Energy Environ Sci . 2024 Oct; 17(21):7983-7998. PMID: 39398319
Electrochemical ammonia synthesis the nitrogen reduction reaction (NRR) has been poised as one of the promising technologies for the sustainable production of green ammonia. In this work, we developed extensive...
4.
Farahmandazad H, Asperti S, Kortlever R, Goetheer E, de Jong W
ChemistryOpen . 2024 Sep; 13(11):e202400166. PMID: 39254258
In this study, the effect of halide anions on the selectivity of the CO reduction reaction to CO was investigated in choline-based ethylene glycol solutions containing different halides (ChCl : ...
5.
Yi S, Heijbroek A, Cutz L, Pillay S, de Jong W, Abeel T, et al.
Sci Total Environ . 2023 Oct; 907:167951. PMID: 37865253
Application of biochar to landfill cover soils can purportedly improve methane (CH) oxidation rates, but understanding the combined effects of soil texture, compaction, and biochar on the activity and composition...
6.
Sajeev Kumar A, Pupo M, Petrov K, Ramdin M, van Ommen J, de Jong W, et al.
J Phys Chem C Nanomater Interfaces . 2023 Jul; 127(27):12857-12866. PMID: 37465054
Aqueous electrolytes used in CO electroreduction typically have a CO solubility of around 34 mM under ambient conditions, contributing to mass transfer limitations in the system. Non-aqueous electrolytes exhibit higher...
7.
Fu S, Li M, Asperti S, de Jong W, Kortlever R
ChemSusChem . 2023 Jan; 16(9):e202202188. PMID: 36718877
N-doped carbon materials can be efficient and cost-effective catalysts for the electrochemical CO reduction reaction (CO RR). Activators are often used in the synthesis process to increase the specific surface...
8.
Boor V, Frijns J, Perez-Gallent E, Giling E, Laitinen A, Goetheer E, et al.
Ind Eng Chem Res . 2022 Oct; 61(40):14837-14846. PMID: 36254199
We performed H-cell and flow cell experiments to study the electrochemical reduction of CO to oxalic acid (OA) on a lead (Pb) cathode in various nonaqueous solvents. The effects of...
9.
Morrison A, Ramdin M, van der Broeke L, de Jong W, Vlugt T, Kortlever R
J Phys Chem C Nanomater Interfaces . 2022 Aug; 126(29):11927-11936. PMID: 35928239
The electrochemical CO reduction reaction (CORR) is important for a sustainable future. Key insights into the reaction pathways have been obtained by density functional theory (DFT) analysis, but so far,...
10.
Ramdin M, de Mot B, Morrison A, Breugelmans T, van den Broeke L, Trusler J, et al.
Ind Eng Chem Res . 2021 Dec; 60(49):17862-17880. PMID: 34937989
Direct electrochemical reduction of CO to C products such as ethylene is more efficient in alkaline media, but it suffers from parasitic loss of reactants due to (bi)carbonate formation. A...