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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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Electrochemical Water Splitting: Bridging the Gaps between Fundamental Research and Industrial Applications

TL;DR: In this article , a review of the very recent endeavors to bridge the gaps between fundamental research and industrial applications for water electrolysis is presented, which reveal the progress of moving the practical applications forward and accelerating synergies between material science and engineering.
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Boosting the oxygen evolution reaction activity of a perovskite through introducing multi-element synergy and building an ordered structure

TL;DR: In this article, a B-site ordered double perovskite with poor oxygen evolution reaction (OER) activity was used as the host material to fulfill the requirement of a short pathway, and then, replace Mo with Ni and Fe with Co to optimize the synergistic interplay of the multi-active sites.
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Defects-rich porous carbon microspheres as green electrocatalysts for efficient and stable oxygen-reduction reaction over a wide range of pH values

TL;DR: In this paper, a hierarchical porous carbon microspheres with a trace amount of encapsulated cobalt as highly active and stable electrocatalysts for the ORR under wide pH values ranged from high alkaline to high acidic conditions.
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Characterization and evaluation of BaCo0.7Fe0.2Nb0.1O3−δ as a cathode for proton-conducting solid oxide fuel cells

TL;DR: In this paper, BaCo0.1O3−δ perovskite oxide (BCFN) was evaluated as a potential cathode material for proton-conducting SOFCs with a BaZr0.7Y0.2O3-δ (BZCY) electrolyte.
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Interconnected graphene nanosheets with confined FeS2/FeS binary nanoparticles as anode material of sodium-ion batteries

TL;DR: In this article, a hybridized 3D network material configuration was developed by interconnected monodispersed graphene nanosheets (MGNs) with confined FeS2/FeS hetero-nanoparticles (NPs) as the main active matter through a facile cold quenching-gas phase sulfidation technology.