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My research focus on the advanced materials for electrochemical energy storage. The .

lv WEIDONG of Chongqing University, Chongqing (CQU) | Contact lv WEIDONG.Weiqiang Lv currently works at the School of Physics, University of Electronic Science and .My research focus on the advanced materials for electrochemical energy storage. The reserach topics inculde but not limited to the electrode/separator materials for lithium ion.

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lv WEIDONG of Chongqing University, Chongqing (CQU) | Contact lv WEIDONG.Weiqiang Lv currently works at the School of Physics, University of Electronic Science and Technology of China. Weiqiang does research in Materials Chemistry, Electrochemistry and. Lithium-sulfur battery with MIP-based electrolyte demonstrates a higher average Coulombic efficiency (99.62%) than that of the battery using ether-based electrolyte (95.63%) during 100 cycles .

EEG-Based Multi-Frequency Multilayer Network for Exploring the Brain State Evolution Underlying Motor Imagery. This research quantitatively explores the evolution of brain states behind MI, which is expected to guide the follow-up application of MI-BCI in clinical rehabilitation medicine. The architecture builds a robust anode-separator interface in LIBs, shortens Li + diffusion path, accelerates electron transport, and mitigates the volume change of the oxide anode in electrochemical reactions.The composition and structure of separators largely impact the rate performances of LIBs. Here, a three-dimensional (3D) nanoporous poly (vinylidenefluoride-hexafluoropropylene) (PVDF-HFP)- polyethylene (PE) composite separator is obtained through solvent liberation.

Efficient and accurate detection of driving fatigue are a legitimate public concern. In this paper, we conduct the simulated driving experiments and an EEG-based driving fatigue detection framework integrating multilayer brain network and convolutional neural network (CNN) is developed.

Weiqiang Lv, James Dickerson. Focuses upon basic theory, material science and device fabrication. Comprehensive overview of solid oxide fuel cells. Discusses both traditional and advanced techniques for gas diffusivity methods. Explores new research trajectories in gas transport. Show all.Semantic Scholar profile for Weidong Lv, with 4 highly influential citations and 8 scientific research papers.My research focus on the advanced materials for electrochemical energy storage. The reserach topics inculde but not limited to the electrode/separator materials for lithium ion.lv WEIDONG of Chongqing University, Chongqing (CQU) | Contact lv WEIDONG.

Weiqiang Lv currently works at the School of Physics, University of Electronic Science and Technology of China. Weiqiang does research in Materials Chemistry, Electrochemistry and.

Lithium-sulfur battery with MIP-based electrolyte demonstrates a higher average Coulombic efficiency (99.62%) than that of the battery using ether-based electrolyte (95.63%) during 100 cycles .

EEG-Based Multi-Frequency Multilayer Network for Exploring the Brain State Evolution Underlying Motor Imagery. This research quantitatively explores the evolution of brain states behind MI, which is expected to guide the follow-up application of MI-BCI in clinical rehabilitation medicine.

The architecture builds a robust anode-separator interface in LIBs, shortens Li + diffusion path, accelerates electron transport, and mitigates the volume change of the oxide anode in electrochemical reactions.The composition and structure of separators largely impact the rate performances of LIBs. Here, a three-dimensional (3D) nanoporous poly (vinylidenefluoride-hexafluoropropylene) (PVDF-HFP)- polyethylene (PE) composite separator is obtained through solvent liberation.Efficient and accurate detection of driving fatigue are a legitimate public concern. In this paper, we conduct the simulated driving experiments and an EEG-based driving fatigue detection framework integrating multilayer brain network and convolutional neural network (CNN) is developed.

Weiqiang Lv, James Dickerson. Focuses upon basic theory, material science and device fabrication. Comprehensive overview of solid oxide fuel cells. Discusses both traditional and advanced techniques for gas diffusivity methods. Explores new research trajectories in gas transport. Show all.

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