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Hua Tong

Researcher at Tianjin University

Publications -  10
Citations -  4529

Hua Tong is an academic researcher from Tianjin University. The author has contributed to research in topics: Photocurrent & p–n junction. The author has an hindex of 8, co-authored 10 publications receiving 3825 citations. Previous affiliations of Hua Tong include National Institute for Materials Science.

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Nano‐photocatalytic Materials: Possibilities and Challenges

TL;DR: This article reviews state-of-the-art research activities in the field, focusing on the scientific and technological possibilities offered by photocatalytic materials, and highlights crucial issues that should be addressed in future research activities.
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Nano‐photocatalytic Materials: Possibilities and Challenges

TL;DR: In this paper, the state-of-the-art research activities in the field of semiconductor photocatalysis are reviewed, focusing on the scientific and technological possibilities offered by photocatalytic materials.
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Surface-alkalinization-induced enhancement of photocatalytic H2 evolution over SrTiO3-based photocatalysts.

TL;DR: A strategy of reaction-environment modulation was employed to change the surface property of a semiconductor photocatalyst to enhance its photocatalytic performance and could achieve a high apparent quantum efficiency in CH(3)OH aqueous solution containing 5 M NaOH at an incident wavelength of 425 ± 12 nm.
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Anatase TiO2 Single Crystals Exposed with High-Reactive {111} Facets Toward Efficient H2 Evolution

TL;DR: In this article, the authors used the density functional theory (DFT) calculations for anatase TiO2 and showed that the {111} facet owned a much higher surface energy of 1.61 J/m2, which is partially attributed to the large percentage of undercoordinated Ti atoms and O atoms existed on the surface.
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Photoelectrochemical properties of nanomultiple CaFe2O4/ZnFe2O4 pn junction photoelectrodes.

TL;DR: It is demonstrated that the multiple-pn-junction structure is favorable to enhancing the photocurrent density and the onset potential of the photoelectrode and the carrier transfer inside the photoElectrode is improved by narrowing the single-layer thickness.