日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Defect-Engineered CoSe(2) Quantum Dots Exposing Highly Active (111) Facets with Lithiophilic-Sulfurophilic Functionality for High-Energy Lithium-Sulfur Batteries

缺陷工程化的CoSe(2)量子点暴露出具有亲锂-亲硫功能的活性(111)晶面,用于高能量锂硫电池

Li, Xue; Yu, Jiaqi; Jin, Tianyu; Li, Yejing; Shi, Yaru; Jiang, Yong; Liu, Xiaoyu; Huang, Shoushuang; Uvdal, Kajsa; Zhao, Bing; Zhang, Jiujun

Regulation of YAP activity by nuclear G-actin binding

核G-肌动蛋白结合对YAP活性的调控

Wang, Hong; Jayawardana, Irma M; Fleisch, Justus M; Frank, Dennis; Zhao, Bing; Kamaras, Christos; Gebhardt, Peter; Knerr, Julian; Ulferts, Svenja; Sivabalasarma, Shamphavi; Albers, Sonja-Verena; Grosse, Robert

Genetic mechanisms, brain structures, and peripheral biomarkers mediate the relationship between physical frailty and neuropsychiatric disorders

遗传机制、脑结构和外周生物标志物介导了身体虚弱与神经精神疾病之间的关系。

Gao, Pei-Yang; Fu, Yan; He, Xiao-Yu; Zhang, Dan-Dan; Chi, Hao-Chen; Huang, Yi-Ming; Wang, Zhi-Bo; Zhang, Wei; Ou, Ya-Nan; Ge, Yi-Jun; You, Jia; Ma, Ling-Zhi; Qiang, Yi-Xuan; Zhao, Bing; Yu, Hai-Hong; Feng, Jianfeng; Tan, Lan; Cheng, Wei; Zhang, Ya-Ru; Yu, Jin-Tai

Podocyte TLR4 deletion alleviates diabetic kidney disease through prohibiting PKCδ/SHP-1-dependent ER stress and relieving podocyte damage and inflammation.

足细胞 TLR4 缺失通过抑制 PKCδ/SHP-1 依赖的内质网应激,减轻足细胞损伤和炎症,从而缓解糖尿病肾病。

Li Zongze, Tan Di, Lin Jiangong, Zhang Tingwei, Liu Bing, Zhao Bing, Liang Decai, Li Li, Wei Xufeng, Lv Zhimei, Wang Rong, Hu Mengsi

Activating Lithium Titanate for High-Performance and Stable Electrochemical Direct Lithium Extraction

活化钛酸锂以实现高性能、稳定的电化学直接锂提取

Zhao, Bing; Xu, Longqian; Qiao, Yingjun; Qian, Zhiqiang; Wei, Wenfei; Zhang, Xudong; Liu, Zhong; Lin, Shihong

Electrical Detection of Magnetic Spin Textures Using Pure Spin Currents in Graphene

利用石墨烯中的纯自旋电流进行磁自旋纹理的电学检测

Sjöström, Lars; Zhao, Bing; Khademi, Maha; Ngaloy, Roselle; Kalaboukhov, Alexei; Åkerman, Johan; Dash, Saroj P

Manipulation of Wnt/β-Catenin Signaling by Synthetic Frizzled Agonist and LRP Antagonist in Organoid Cultures and In Vivo

利用合成的Frizzled激动剂和LRP拮抗剂在类器官培养和体内调控Wnt/β-catenin信号通路

Dai, Quanhui; Wang, Jiawen; Lin, Zihuan; Yu, Danni; Yang, Hui; Wei, Jinsong; Li, Xiaoyu; Hu, Hao; Ni, Chao; Zhao, Bing

New advances in small molecule drugs targeting NMDA receptors

靶向NMDA受体的小分子药物的新进展

Zeng, Yue; Qu, Zhi-Yan; Zhu, Qian-Wen; Wang, Hai-Ying; Zhou, Yu; Gao, Zhao-Bing

AI-driven breakthroughs in ion channel drug discovery: the future is now

人工智能驱动的离子通道药物研发突破:未来已来

Zheng, Ming-Yue; Gao, Zhao-Bing

Discovery of selective GluN1/GluN3A NMDA receptor inhibitors using integrated AI and physics-based approaches

利用人工智能和物理学相结合的方法发现选择性 GluN1/GluN3A NMDA 受体抑制剂

Li, Shi-Wei; Zeng, Yue; Wu, Sa-Nan; Ma, Xin-Yue; Xu, Chao; Li, Zong-Quan; Fang, Sui; Chen, Xue-Qin; Gao, Zhao-Bing; Bai, Fang