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Zongping Shao

Researcher at Nanjing Tech University

Publications -  891
Citations -  55259

Zongping Shao is an academic researcher from Nanjing Tech University. The author has contributed to research in topics: Oxide & Perovskite (structure). The author has an hindex of 94, co-authored 764 publications receiving 39128 citations. Previous affiliations of Zongping Shao include University of Western Australia & Samsung.

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Controlled deposition and utilization of carbon on Ni-YSZ anodes of SOFCs operating on dry methane

TL;DR: In this article, a successive multi-stage process is performed to explore the operation of solid oxide fuel cells using dry methane or the deposited carbon from methane decomposition as fuel, and an electrochemical impedance analysis suggests that the partial oxidization of Ni can occur at anodes when the carbon fuel is consumed.
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Single-atom catalysts for high-efficiency photocatalytic and photoelectrochemical water splitting: Distinctive roles, unique fabrication methods and specific design strategies

TL;DR: In this article , solar water splitting has received increasing interest in various routes to generate hydrogen, such as solar-water splitting, photovoltaic, and solar-energy harvesting.
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Improved performance of a symmetrical solid oxide fuel cell by swapping the roles of doped ceria and La0.6Sr1.4MnO4+δ in the electrode

TL;DR: In this article, the swapping of roles for SDC and LSMO4 in electrodes of symmetrical solid oxide fuel cells is exploited, i.e., SDC is applied as the scaffold and LS MO4 as the surface modifier.
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Water-stable MOFs-based core-shell nanostructures for advanced oxidation towards environmental remediation

TL;DR: In this article, a core-shell structure for peroxymonosulfate (PMS) activation in an advanced oxidation process (AOP) for wastewater treatment is developed by taking advantage of the rich pores of water stable MOFs.
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Double perovskite Pr2CoFeO6 thermoelectric oxide: roles of Sr-doping and micro/nanostructuring

TL;DR: In this article, a new type of oxide-based thermoelectric material, called Pr2CoFeO6, was reported, which is a p-type semiconductor with narrow bandgap and achieved a peak figure of merit, ZT of 0.015 at 773 K with a high positive Seebeck coefficient of 250μV K−1 and very low thermal conductivity.