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- W2783002138 abstract "We fabricated visible-light responsive g-C3N4/ZnGa1.9Al0.1O4 heterojunction nanocomposites using narrow band gap g-C3N4 and wide band gap mesoporous ZnGa1.9Al0.1O4 by thermolysis and hydrothermal methods. The charge-transfer, electrons-holes separation and its kinetics across the intimate interface of g-C3N4/ZnGa1.9Al0.1O4 were systematically investigated using photoelectrochemical (PEC) measurements. The high-resolution transmission electron microscopy (HR-TEM) shows an intimate interface between g-C3N4 and ZnGa1.9Al0.1O4 nanocrystals in the heterojunctions. The PEC measurements revealed higher photocurrent density towards water splitting in case of heterojunction prepared by thermolysis method compared to hydrothermal process without noble metal co-catalyst with excellent stability. The remarkable water splitting activity is mainly ascribed to the least recombination rate of electrons and holes, facile kinetics and least charge-transfer resistance. This is further confirmed by kinetic studies using Tafel slope and exchange-current density data." @default.
- W2783002138 created "2018-01-26" @default.
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- W2783002138 date "2018-01-09" @default.
- W2783002138 modified "2023-09-25" @default.
- W2783002138 title "Synthesis of g-C<sub>3</sub>N<sub>4</sub>/ZnGa<sub>1.9</sub>Al<sub>0.1</sub>O<sub>4</sub>Heterojunction Using Narrow and Wide Band Gap Material for Enhanced Photoelectrochemical Water Splitting" @default.
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- W2783002138 doi "https://doi.org/10.1002/slct.201702879" @default.
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