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Tengfei Luo

Showing results (91-100 of 121) with videos related to

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ACS Applied Materials & Interfaces|July 14, 2020
Plasma-Made Graphene Nanostructures with Molecularly Dispersed F and Na Sites for Solar Desalination of Oil-Contaminated Seawater with Complete In-Water and In-Air Oil RejectionShenghao Wu, Biyao Gong, Huachao Yang, et al.
ACS Nano|July 28, 2023
Suppressing Dendrite Growth and Side Reactions via Mechanically Robust Laponite-Based Electrolyte Membranes for Ultrastable Aqueous Zinc-Ion BatteriesSiyu Tian, Taesoon Hwang, Yafen Tian, et al.
Bioinformatics (Oxford, England)|January 20, 2026
Enhancing interpretation of clinical disease-associated copy number variations from multiple sequencing strategies with CNVSeekerXudong Xiang, Xinxin Mao, Tengfei Luo, et al.
Frontiers in Neuroscience|April 19, 2021
Characterizing the Expression Patterns of Parkinson's Disease Associated GenesBin Li, Guihu Zhao, Kuokuo Li, et al.
Journal of Molecular Medicine (Berlin, Germany)|October 13, 2020
De novo mutation of cancer-related genes associates with particular neurodevelopmental disordersBin Li, Kuokuo Li, Di Tian, et al.
ACS Nano|May 17, 2017
Functionalized Graphene Enables Highly Efficient Solar Thermal Steam GenerationJunlong Yang, Yunsong Pang, Weixin Huang, et al.
Nano Letters|May 17, 2017
Molybdenum Carbamate Nanosheets as a New Class of Potential Phase Change MaterialsMaksym Zhukovskyi, Vladimir Plashnitsa, Nattasamon Petchsang, et al.
Nature Communications|October 25, 2024
Author Correction: Designing electrolytes with high solubility of sulfides/disulfides for high-energy-density and low-cost K-Na/S batteriesLiying Tian, Zhenghao Yang, Shiyi Yuan, et al.
Nature Communications|September 5, 2024
Designing electrolytes with high solubility of sulfides/disulfides for high-energy-density and low-cost K-Na/S batteriesLiying Tian, Zhenghao Yang, Shiyi Yuan, et al.
Nucleic Acids Research|September 30, 2025
Gene4Denovo2: an updated platform for human de novo mutations discovery and interpretationZhaopo Zhu, Pei Yu, Xinxin Mao, et al.
Pageof 13

Showing results (91-100 of 121) with videos related to

Sort By:
Pageof 13
ACS Applied Materials & Interfaces|July 14, 2020
Plasma-Made Graphene Nanostructures with Molecularly Dispersed F and Na Sites for Solar Desalination of Oil-Contaminated Seawater with Complete In-Water and In-Air Oil RejectionShenghao Wu, Biyao Gong, Huachao Yang, et al.
ACS Nano|July 28, 2023
Suppressing Dendrite Growth and Side Reactions via Mechanically Robust Laponite-Based Electrolyte Membranes for Ultrastable Aqueous Zinc-Ion BatteriesSiyu Tian, Taesoon Hwang, Yafen Tian, et al.
Bioinformatics (Oxford, England)|January 20, 2026
Enhancing interpretation of clinical disease-associated copy number variations from multiple sequencing strategies with CNVSeekerXudong Xiang, Xinxin Mao, Tengfei Luo, et al.
Frontiers in Neuroscience|April 19, 2021
Characterizing the Expression Patterns of Parkinson's Disease Associated GenesBin Li, Guihu Zhao, Kuokuo Li, et al.
Journal of Molecular Medicine (Berlin, Germany)|October 13, 2020
De novo mutation of cancer-related genes associates with particular neurodevelopmental disordersBin Li, Kuokuo Li, Di Tian, et al.
ACS Nano|May 17, 2017
Functionalized Graphene Enables Highly Efficient Solar Thermal Steam GenerationJunlong Yang, Yunsong Pang, Weixin Huang, et al.
Nano Letters|May 17, 2017
Molybdenum Carbamate Nanosheets as a New Class of Potential Phase Change MaterialsMaksym Zhukovskyi, Vladimir Plashnitsa, Nattasamon Petchsang, et al.
Nature Communications|October 25, 2024
Author Correction: Designing electrolytes with high solubility of sulfides/disulfides for high-energy-density and low-cost K-Na/S batteriesLiying Tian, Zhenghao Yang, Shiyi Yuan, et al.
Nature Communications|September 5, 2024
Designing electrolytes with high solubility of sulfides/disulfides for high-energy-density and low-cost K-Na/S batteriesLiying Tian, Zhenghao Yang, Shiyi Yuan, et al.
Nucleic Acids Research|September 30, 2025
Gene4Denovo2: an updated platform for human de novo mutations discovery and interpretationZhaopo Zhu, Pei Yu, Xinxin Mao, et al.
Pageof 13