Farah Joseph, Malloggi Florent, Miserque Frédéric, Kim Jongwook, Gravel Edmond, Doris Eric
Université Paris-Saclay, CEA, CNRS, NIMBE, 91191 Gif-sur-Yvette, France.
Université Paris-Saclay, Département Médicaments et Technologies pour la Santé (DMTS), CEA, INRAE, SCBM, 91191 Gif-sur-Yvette, France.
Nanomaterials (Basel). 2023 Mar 27;13(7):1184. doi: 10.3390/nano13071184.
Titanium dioxide nanoparticles were combined with carbon nanotubes and gold to develop improved photocatalysts for the production of hydrogen from water. The entangled nature of the nanotubes allowed for the integration of the photoactive hybrid catalyst, as a packed-bed, in a microfluidic photoreactor, and the chips were studied in the photocatalyzed continuous flow production of hydrogen. The combination of titanium dioxide with carbon nanotubes and gold significantly improved hydrogen production due to a synergistic effect between the multi-component system and the stabilization of the active catalytic species. The titanium dioxide/carbon nanotubes/gold system permitted a 2.5-fold increase in hydrogen production, compared to that of titanium dioxide/carbon nanotubes, and a 20-fold increase, compared to that of titanium dioxide.
二氧化钛纳米颗粒与碳纳米管和金相结合,以开发用于从水中制氢的改进型光催化剂。碳纳米管的缠结特性使得光活性混合催化剂能够以填充床的形式集成到微流控光反应器中,并对该芯片在光催化连续流制氢过程中进行了研究。二氧化钛与碳纳米管和金的结合由于多组分系统之间的协同效应以及活性催化物种的稳定化而显著提高了产氢量。与二氧化钛/碳纳米管体系相比,二氧化钛/碳纳米管/金体系的产氢量提高了2.5倍,与二氧化钛体系相比提高了20倍。