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Qian Zhang

Researcher at Chinese Academy of Sciences

Publications -  816
Citations -  20819

Qian Zhang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Thermoelectric effect & Thermoelectric materials. The author has an hindex of 56, co-authored 638 publications receiving 14885 citations. Previous affiliations of Qian Zhang include Radboud University Nijmegen Medical Centre & Northeast Normal University.

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Journal ArticleDOI

MicroRNA‑155 targets myosin light chain kinase to inhibit the migration of human bone marrow‑derived mesenchymal stem cells

TL;DR: The results may facilitate the development and clinical use of BM‑MSCs in terms of their migration and microRNAs involved in various biological functions by mediating mRNA degradation or inhibiting the translation of target genes.
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APC/C‐dependent degradation of Spd2 regulates centrosome asymmetry in Drosophila neural stem cells

TL;DR: In this paper , the authors used an in vitro screen for centrosomal substrates of the APC/C ubiquitin ligase in Drosophila, identifying several conserved pericentriolar material (PCM) components, including the inner PCM protein Spd2.
Peer ReviewDOI

Design of CCD test platform of scientific imaging for wide field survey telescope

TL;DR: In this paper , a verification platform for the wide field survey telescope (WFST) was designed to test the CCD290-99 chips and the test results showed that the test platform meets the requirement of the CCS test and the design of CCD controller meets the scientific imaging requirements for the WFST camera.
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Revealing the Defect-Dominated Electron Scattering in Mg3Sb2-Based Thermoelectric Materials

TL;DR: In this article , a defect-dominated carrier scattering mechanism can significantly impact the room-temperature electron mobility of n-type Mg3Sb2-based materials, and the relationship among the point defects, chemical compositions, and synthesis conditions was revealed.
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Multiple fano resonances in spatially compact and spectrally efficient spoof surface plasmon resonators with composite textures.

TL;DR: By adjusting the geometry and filling medium of each substructure in the composite system, it is found that the multipole resonant modes sustained by one substructure can couple with those in the other, giving rise to multi-band Fano resonances.