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ZnO/ZnS Heterostructured NanorodArraysand Their Efficient PhotocatalyticHydrogen Evolution

ZnO/ZnS Heterostructured NanorodArraysand Their Efficient PhotocatalyticHydrogen Evolution

ZnO/ZnS Heterostructured NanorodArraysand Their Efficient PhotocatalyticHydrogen Evolution

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Infrared response in photocatalytic polymeric carbon nitride for water splitting via an upconversion mechanism

Infrared response in photocatalytic polymeric carbon nitride for water splitting via an upconversion mechanism

Infrared response in photocatalytic polymeric carbon nitride for water splitting via an upconversion mechanism

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Highly active deficient ternary sulfide photoanode for photoelectrochemical water splitting

Highly active deficient ternary sulfide photoanode for photoelectrochemical water splitting

Highly active deficient ternary sulfide photoanode for photoelectrochemical water splitting

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Ef?cient photocatalytic hydrogen evolution with ligand engineered all-inorganic InP and InP/ZnS colloidal quantum dots

Ef?cient photocatalytic hydrogen evolution with ligand engineered all-inorganic InP and InP/ZnS colloidal quantum dots

Ef?cient photocatalytic hydrogen evolution with ligand engineered all-inorganic InP and InP/ZnS colloidal quantum dots

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Magnetic Fe3O4-encapsulated VAN@MIL-101(Fe) with mixed-valence sites and mesoporous struc- tures as e?cient bifunctional water splitting photocatalysts

Magnetic Fe3O4-encapsulated VAN@MIL-101(Fe) with mixed-valence sites and mesoporous struc- tures as e?cient bifunctional water splitting photocatalysts

Magnetic Fe3O4-encapsulated VAN@MIL-101(Fe) with mixed-valence sites and mesoporous struc- tures as e?cient bifunctional water splitting photocatalysts

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Atomic Insights for Optimum and Excess Doping in Photocatalysis: A Case Study of Few-Layer Cu-ZnIn2S4

Atomic Insights for Optimum and Excess Doping in Photocatalysis: A Case Study of Few-Layer Cu-ZnIn2S4

Atomic Insights for Optimum and Excess Doping in Photocatalysis: A Case Study of Few-Layer Cu-ZnIn2S4

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This article can be cited before page numbers have been issued, to do this please use:  J. Hu, W. Jia, J. Xie, Y. Cao, X. Zhang and D. Jia, CrystEngComm, 2018, DOI: 10.1039/C8CE01267A.

This article can be cited before page numbers have been issued, to do this please use: J. Hu, W. Jia, J. Xie, Y. Cao, X. Zhang and D. Jia, CrystEngComm, 2018, DOI: 10.1039/C8CE01267A.

This article can be cited before page numbers have been issued, to do this please use: J. Hu, W. Jia, J. Xie, Y. Cao, X. Zhang and D. Jia, CrystEngComm, 2018, DOI: 10.1039/C8CE01267A.

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