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Sofiene Abdellaoui

Explore the profile of Sofiene Abdellaoui including associated specialties, affiliations and a list of published articles. Areas
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Articles 22
Citations 219
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Recent Articles
1.
Fall I, Doumeche B, Abdellaoui S, Remond C, Rakotoarivonina H, Ochs M
Bioelectrochemistry . 2023 Nov; 156:108609. PMID: 37995505
Lignin is the most important natural source of aromatic compounds. The valorisation of lignin into aromatics requires fractionation steps that can be catalysed by ligninolytic enzymes. However, one of the...
2.
Fall I, Czerwiec Q, Abdellaoui S, Doumeche B, Ochs M, Remond C, et al.
Appl Microbiol Biotechnol . 2022 Nov; 107(1):201-217. PMID: 36418542
Lignocellulosic biomass is rich in lignins, which represent a bottomless natural source of aromatic compounds. Due to the high chemical complexity of these aromatic polymers, their biological fractionation remains challenging...
3.
Yuan M, Abdellaoui S, Chen H, Kummer M, Malapit C, You C, et al.
Angew Chem Int Ed Engl . 2020 Mar; 59(23):8969-8973. PMID: 32198829
Aliphatic synthetic intermediates with high added value are generally produced from alkane sources (e.g., petroleum) by inert carbon-hydrogen (C-H) bond activation using classical chemical methods (i.e. high temperature, rare metals)....
4.
Honorio Franco J, Zaghetto de Almeida P, Abdellaoui S, Hickey D, Ciancaglini P, Polizeli M, et al.
Bioelectrochemistry . 2019 Jul; 130:107331. PMID: 31349191
Electrochemical ethanol oxidation was performed at an innovative hybrid architecture electrode containing TEMPO-modified linear poly(ethylenimine) (LPEI) and oxalate oxidase (OxOx) immobilized on carboxylated multi-walled carbon nanotubes (MWCNT-COOH). On the basis...
5.
Hickey D, Lim K, Cai R, Patterson A, Yuan M, Sahin S, et al.
Chem Sci . 2018 Jul; 9(23):5172-5177. PMID: 29997870
Enzymatic bioelectrocatalysis often requires an artificial redox mediator to observe significant electron transfer rates. The use of such mediators can add a substantial overpotential and obfuscate the protein's native kinetics,...
6.
Yuan M, Sahin S, Cai R, Abdellaoui S, Hickey D, Minteer S, et al.
Angew Chem Int Ed Engl . 2018 Apr; 57(22):6582-6586. PMID: 29656589
Increasing greenhouse gas emissions have resulted in greater motivation to find novel carbon dioxide (CO ) reduction technologies, where the reduction of CO to valuable chemical commodities is desirable. Molybdenum-dependent...
7.
Cai R, Milton R, Abdellaoui S, Park T, Patel J, Alkotaini B, et al.
J Am Chem Soc . 2018 Apr; 140(15):5041-5044. PMID: 29608063
Over the past decade, there has been significant research in electrochemical reduction of CO, but it has been difficult to develop catalysts capable of C-C bond formation. Here, we report...
8.
Abdellaoui S, Macazo F, Cai R, De Lacey A, Pita M, Minteer S
Angew Chem Int Ed Engl . 2017 Dec; 57(9):2404-2408. PMID: 29286557
An enzymatic electrosynthesis system was created by combining an aldehyde deformylating oxygenase (ADO) from cyanobacteria that catalyzes the decarbonylation of fatty aldehydes to alkanes and formic acid with an electrochemical...
9.
Cai R, Abdellaoui S, Kitt J, Irvine C, Harris J, Minteer S, et al.
Anal Chem . 2017 Nov; 89(24):13290-13298. PMID: 29135232
The need to immobilize active enzyme, while ensuring high rates of substrate turnover and electronic charge transfer with an electrode, is a centrally important challenge in the field of bioelectrocatalysis....
10.
Rana H, Moussatche P, Rocha L, Abdellaoui S, Minteer S, Moomaw E
Biochem Biophys Rep . 2017 Sep; 5:396-400. PMID: 28955847
Isothermal titration calorimetry (ITC) may be used to determine the kinetic parameters of enzyme-catalyzed reactions when neither products nor reactants are spectrophotometrically visible and when the reaction products are unknown....