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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.

Papers
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Performance of SrSc0.2Co0.8O3−δ + Sm0.5Sr0.5CoO3−δ mixed-conducting composite electrodes for oxygen reduction at intermediate temperatures

TL;DR: In order to improve the electrical conductivity of the SrSc 0.2 Co 0.8 O 3− δ (SrScCo) electrode, a composite of 70 ¼wt% SrScCo 0.6 O 3 − δ and 30 ¼ weight% Sm 0.5 CoO 3−δ (SmSrCo) was prepared and investigated for electrochemical oxygen reduction at intermediate temperatures as discussed by the authors.
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An “electronegative” bifunctional coating layer: simultaneous regulation of polysulfide and Li-ion adsorption sites for long-cycling and “dendrite-free” Li–S batteries

TL;DR: In this paper, the authors used liquid phase delaminated birnessite (HxMnO2+x) nanosheets along with graphene and carbon nanotubes for the first time to create an "electronegative" coating layer for Li-S batteries to suppress the polysulfide shuttling and Li-dendrite growth.
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Assessment of nickel cermets and La0.8Sr0.2Sc0.2Mn0.8O3 as solid-oxide fuel cell anodes operating on carbon monoxide fuel

TL;DR: In this article, the phase instability of LSSM in pure CO atmosphere was investigated for SOFCs operating on CO, and the degradation was observed for all three cells operating on pure CO which is irreversible for the cell with Ni-SDC anode while largely reversible for Ni-ScSZ anode.
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Oxygen permeation through perovskite membranes and the improvement of oxygen flux by surface modification

TL;DR: In this article, a modified phase inversion process was used to obtain a self-supported asymmetric substrate with a very thin densified perovskite layer for mixed conduction, and surface modification was carried out by the attachment of Pt particles on the surface of the hollow fiber.
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Cobalt-free SrFe0.9Ti0.1O3−δ as a high-performance electrode material for oxygen reduction reaction on doped ceria electrolyte with favorable CO2 tolerance

TL;DR: In this paper, a cobalt-free titanium-doped perovskite with a nominal composition of SrFe 0.9 Ti 0.1 O 3− δ (SFT) is exploited as an alternative electrode for solid oxide fuel cells (SOFCs).