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Zhong Jin

Researcher at Nanjing University

Publications -  391
Citations -  22596

Zhong Jin is an academic researcher from Nanjing University. The author has contributed to research in topics: Chemistry & Graphene. The author has an hindex of 67, co-authored 333 publications receiving 17023 citations. Previous affiliations of Zhong Jin include Nanjing University of Science and Technology & Chinese Academy of Sciences.

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Multi-yolk-shell copper oxide@carbon octahedra as high-stability anodes for lithium-ion batteries

TL;DR: In this paper, a rational design and facile preparation strategy of copper oxide encapsulated mesoporous carbon multi-yolk-shell octahedra, in which multiple CuO nanoparticles are well-confined in the compartments of micro-scale octahedral carbon scaffolds, is reported.
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Human Gait Recognition via Sparse Discriminant Projection Learning

TL;DR: This paper focuses on the matrix representation-based human gait recognition and proposes a novel discriminant subspace learning method called sparse bilinear discriminant analysis (SBDA), which extends the recently proposed matrix-representation-based discriminantAnalysis methods to sparse cases.
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Face recognition using discriminant locality preserving projections based on maximum margin criterion

TL;DR: Experiments show the effectiveness of the proposed DLPP/MMC, a new discriminant locality preserving projections based on maximum margin criterion, on the ORL, Yale, FERET, and PIE face databases.
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Classical and quasiclassical spectral analysis of CH 5 using an ab initio potential energy surface

TL;DR: In this paper, a potential energy surface and calculations of power spectra for CH5+ were obtained by precise fitting of MP2/cc-pVTZ electronic energies and gradients, which were obtained in classical direct-dynamics calculations.
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Shape-Controlled Synthesis of CdS Nanocrystals in Mixed Solvents

TL;DR: In this paper, the growth of CdS nanotetrahedrons, pencil-shaped nanorods, tetrapods, prickly spheres, and high aspect-ratio hexagonal nanoprisms has been achieved by adjusting the ratio of two solvents ethylenediamine and ethylene glycol under the solvothermal condition.