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Synergistic effect of ru embedded 2d ti3alc2 binary cocatalyst with porous g-c3n4 to construct 2d/2d ru-max/pcn heterojunction for enhanced photocatalytic h-2 production

Tahir, B. and Tahir, M. (2021) Synergistic effect of ru embedded 2d ti3alc2 binary cocatalyst with porous g-c3n4 to construct 2d/2d ru-max/pcn heterojunction for enhanced photocatalytic h-2 production. Materials Research Bulletin, 144 . ISSN 0025-5408

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Official URL: http://dx.doi.org/10.1016/j.materresbull.2021.1114...

Abstract

Developing engineering advanced semiconductor materials with low cost and high efficiency have great importance in solar assisted hydrogen production. In this work, well-designed Ru modulated oxygen defective Ti3AlC2 MAX multilayers binary cocatalyst with porous g-C3N4 has been fabricated through ultrasonic approach. Synergistic effect of Ru/Ti3AlC2 enabling proficient charge carrier transportation for significantly enhanced H2 production. The optimized 3Ru-15Ti3AlC2/g-C3N4 exhibited 1445 µmol g−1h−1 of H2 evolution rate which is 7.67 and 16.35 times more than using 15Ti3AlC2/CN and CN samples. The obvious augmented H2 production can be attributed to efficient charges separation with higher light absorption due to Ru/Ti3AlC2 binary cocatalyst. The catalyst loading and sacrificial reagents further confirms mass transfer and surface-active sites exposed to light irradiation. This study provides new approach to construct heterojunction of 2D/2D self-assembly, enabling synergistically improved quantum yield with higher cyclic stability and can be further explored in other solar energy assisted applications.

Item Type:Article
Uncontrolled Keywords:binary ru catalysts, ceramic materials, H2 evolution
Subjects:T Technology > TP Chemical technology
Divisions:Chemical and Energy Engineering
ID Code:94716
Deposited By: Narimah Nawil
Deposited On:31 Mar 2022 15:13
Last Modified:31 Mar 2022 15:13

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