Potassium-mediated control of adsorbed intermediates on CuCoAl layered nanoplates for ethanol synthesis from syngas

Author:

Sun Kai,Geng Shiqi,Yang Jiaqian,Song Faen,Gu Yongqiang,Feng Haozhe,Tsubaki Noritatsu,Zhang Qingde,Tan Yisheng

Publisher

Elsevier BV

Reference64 articles.

1. Direct conversion of syngas to higher alcohols via tandem integration of Fischer-Tropsch synthesis and reductive hydroformylation;Jeske;Angew Chem Int Ed,2022

2. Edge-rich molybdenum disulfide tailors carbon-chain growth for selective hydrogenation of carbon monoxide to higher alcohols;Hu;Nat Commun,2023

3. Preparation of layered double oxides encapsulated in carbon nanotubes to boost selective synthesis of higher alcohols from syngas: Modifying hydrogenation activity and restricting particle sizes by confinement effect;Cheng;Mol Catal,2024

4. Recent advances in the routes and catalysts for ethanol synthesis from syngas;Liu;Chem Soc Rev,2022

5. Status and prospects in higher alcohols synthesis from syngas;Luk;Chem Soc Rev,2017

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