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Wen Lulu

Researcher at University of Science and Technology of China

Publications -  15
Citations -  421

Wen Lulu is an academic researcher from University of Science and Technology of China. The author has contributed to research in topics: Overpotential & Nanosheet. The author has an hindex of 7, co-authored 15 publications receiving 264 citations. Previous affiliations of Wen Lulu include Chinese Academy of Sciences & Hefei Institutes of Physical Science.

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Flexible vanadium-doped Ni2P nanosheet arrays grown on carbon cloth for an efficient hydrogen evolution reaction.

TL;DR: By combining hydrothermal and low temperature phosphidation methods, V-doped Ni2P nanosheet arrays grown on carbon cloth were successfully prepared for the HER and it is found that the prepared V-Ni2P NSAs/CC exhibits preeminent performance for the Her.
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Cr-Dopant Induced Breaking of Scaling Relations in CoFe Layered Double Hydroxides for Improvement of Oxygen Evolution Reaction.

TL;DR: Density functional theory (DFT) calculations unveil that Cr dopants as new active sites could improve the electron-donation ability of the resultant Cr-CoFe LDHs due to the smaller electronegativity of Cr in comparison with Fe and Co.
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Hierarchical hetero-Ni3Se4@NiFe LDH micro/nanosheets as efficient bifunctional electrocatalysts with superior stability for overall water splitting

TL;DR: In this article, a hierarchical hetero-Ni3Se4@NiFe LDH (layered double hydroxide) micro/nanosheets were prepared by coupling NiFe LDIs with Ni3Se 4 micro-sized sheets, and could be used as effective bifunctional electrocatalysts for water splitting.
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Cu-Doped CoP Nanorod Arrays: Efficient and Durable Hydrogen Evolution Reaction Electrocatalysts at All pH Values

TL;DR: In this paper, a simple method for preparation of self-supported nanoporous Cu-doped CoP nanorod arrays on carbon cloth (Cu-CoP NRAs/CC) by a hydrothermal and low-temperature phosphidation process was described.
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MnMoO4 nanosheet array: an efficient electrocatalyst for hydrogen evolution reaction with enhanced activity over a wide pH range.

TL;DR: This MnMoO4 NSA/NF electrocatalyst provides a highly efficient material for water splitting devices for industrial hydrogen production and demonstrates an excellent stability with ignorable activity decrease.