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Zhen Li

Researcher at Wuhan University

Publications -  3347
Citations -  95191

Zhen Li is an academic researcher from Wuhan University. The author has contributed to research in topics: Medicine & Computer science. The author has an hindex of 127, co-authored 1712 publications receiving 71351 citations. Previous affiliations of Zhen Li include Tsinghua University & Hong Kong University of Science and Technology.

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High-performance lithium–selenium batteries promoted by heteroatom-doped microporous carbon

TL;DR: In this paper, a microporous N-doped carbon confined Se composite was developed as a cathode material for advanced Li-Se batteries, which is able to deliver a discharge capacity as high as 303 mA h g−1 at 20 C and a reversible capacity of 506 mA Hg −1 at 1 C even after 150 cycles.
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Thermochemical CO2 splitting reaction with supported LaxA1−xFeyB1−yO3 (A = Sr, Ce, B = Co, Mn; 0 ⩽ x, y ⩽ 1) perovskite oxides

TL;DR: In this article, the authors considered ZrO2, Al2O3 and SiO2 as supports to disperse La(x)A(1-x)Fe(y)B(1y)O(3) materials and different supports induce great differences in the reaction activity.
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pH-Responsive Fe(III)–Gallic Acid Nanoparticles for In Vivo Photoacoustic-Imaging-Guided Photothermal Therapy

TL;DR: Fe(III)-gallic acid nanoparticles with strong near-infrared absorbance are very stable in mild acidic conditions, but easily decomposed in neutral conditions, which enables the nanoparticles to be stable in a tumor and easily metabolized in other organs, thus providing a safe nanoplatform for in vivo photoacoustic imaging/photothermal therapy theranostic applications.
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Engineering NIR-IIb fluorescence of Er-based lanthanide nanoparticles for through-skull targeted imaging and imaging-guided surgery of orthotopic glioma

TL;DR: The capability of the strong second near-infrared-IIb (NIR IIb, 1500−1700 nm) fluorescence from Er-based lanthanide nanoparticles in imaging-guided surgery of orthotopic glioma is reported and the highest tumor-to-background ratio ever reported is obtained.
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Silicon decorated with amorphous cobalt molybdenum sulfide catalyst as an efficient photocathode for solar hydrogen generation.

TL;DR: The Si/a-CoMoSx hybrid photocathode is functional over a wide range of pH values, thus making it a promising candidate for the construction of a complete solar-driven water splitting PEC device.