CO2 selectivity of flower-like MoS2 grown on TiO2 nanofibers coated with acetic acid-treated graphitic carbon nitride

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초록

Activated CO2 adsorption sites are crucial for improving selectivity in photocatalytic CO2 reduction. Co-catalysts incorporating rare or noble metals have previously been required to achieve high CO2 selectivity (S-CO2); thus, noble-metal-free catalysts with high S-CO2 are desirable but challenging to realize. We introduced S-scheme heterojunction using noble-metal-free TiO2/MoS2/graphitic carbon nitride (g-C3N4) with a strong redox ability showing S-CO2 > 90%. This heterostructure improved CO2 conversion, to levels 3.1 times higher than that of the g-C3N4 alone and exhibited sufficient kinetic overpotential (0.18 eV) to produce significant amounts of CH4. When the proportion of g-C3N4 was optimized, the specified TiO2/MoS2/g-C3N4 achieved high S-CO2 (similar to 90%) due to its improved CO2 adsorption, in turn due to the improved specific surface area and pore size distribution attributable to amino (-NH2) groups of g-C3N4 We introduced, a novel, noble-metal-free TiO2/MoS2/g-C3N4 heterostructure that maximizes the number of CO2 adsorption sites and charge carriers separation through interconnected components, and thus increases S-CO2.

키워드

TiO2 nanofibersMoS2Graphitic carbon nitridePhotocatalytic CO2 reductionCO2 selectivityCO2 adsorptionS-schemePOROUS G-C3N4REDUCTIONNANOSHEETSHETEROSTRUCTURESPHOTOCATALYSTSNANOCOMPOSITESNANOPARTICLESGRAPHENECATALYSTDIOXIDE
제목
CO2 selectivity of flower-like MoS2 grown on TiO2 nanofibers coated with acetic acid-treated graphitic carbon nitride
저자
Kang, SuheeKhan, HarithamLee, Caroline Sunyong
DOI
10.1016/j.solmat.2020.110890
발행일
2021-03
유형
Article
저널명
Solar Energy Materials and Solar Cells
221
페이지
1 ~ 11