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Lei Zhang

Researcher at Southeast University

Publications -  1811
Citations -  43013

Lei Zhang is an academic researcher from Southeast University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 78, co-authored 1485 publications receiving 30058 citations. Previous affiliations of Lei Zhang include Nanjing University of Information Science and Technology & The Chinese University of Hong Kong.

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Photogalvanic effect induced fully spin polarized current and pure spin current in zigzag SiC nanoribbons

TL;DR: It is found that 100% spin polarized photocurrent can be easily obtained in a wide range of photon energies by shining linearly/circularly polarized light when ZSiCNRs are in the anti-ferromagnetic (AFM) state.
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Pure spin current generation via photogalvanic effect with spatial inversion symmetry

TL;DR: In this article, the authors proposed a new idea to generate pure spin current with photogalvanic effect (PGE) by designing devices with spatial inversion symmetry based on two-dimensional spin semiconducting materials.
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Anisotropic Nanoscale Presentation of Cell Adhesion Ligand Enhances the Recruitment of Diverse Integrins in Adhesion Structures and Mechanosensing‐Dependent Differentiation of Stem Cells

TL;DR: The potential use of well‐controlled synthetic nanoplatforms to unravel the fundamental mechanisms of cell adhesion and associated signaling at the molecular level and to provide valuable guidance for the rational design of biomaterials with tailored bioactive functions is demonstrated.
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A Novel Workflow-Level Data Placement Strategy for Data-Sharing Scientific Cloud Workflows

TL;DR: A novel workflow-level data placement model is constructed, which regards multiple workflows as a whole, and a two-stage data placement strategy is proposed which first pre-allocates initial datasets to proper datacenters during workflow build-time stage, and then dynamically distributes newly generated datasets to appropriate datacenter during runtime stage.
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Extreme high energy storage efficiency in perovskite structured (1-x)(Ba0.8Sr0.2)TiO3-xBi(Zn2/3Nb1/3)O3 (0.04 ≤ x ≤ 0.16) ceramics

TL;DR: In this paper, the authors designed and synthesized (1-x)(Ba0.8Sr0.2)TiO3-xBi(Zn2/3Nb1/3)O3 (0.04 ≤ x ≤ 0.16) [BST-xBZN] ceramics, exhibiting ultrahigh energy efficiency and super stability against temperature.