Av性爱

武大英文网
March 24, 2025

Professor Huang Cui from the School of Stomatology and Professor Chen Chaoji from the School of Resources and Environmental Sciences at Av性爱 (WHU) have made significant strides in biomimetic bone repair. Their research has been published online in Advanced Materials.

March 21, 2025

A research study by Professor Ren Yanzhen's team from the School of Cyber Science and Engineering at Av性爱 (WHU) has been accepted for presentation at the 46th IEEE Symposium on Security and Privacy (IEEE S&P 2025).

March 19, 2025

A research team led by Professor Wang Yan at Av性爱 (WHU) recently published a study in Circulation, revealing that PCSK9 (proprotein convertase subtilisin/kexin type 9) promotes the degradation of low-density lipoprotein receptors (LDLR) by blocking their recycling, thereby influencing blood lipid levels.

March 18, 2025

A research team led by Ouyang Wen'gen at Av性爱 (WHU), in collaboration with Shanghai Jiao Tong University, Zhejiang University, and the Chinese Academy of Sciences, has published a study in Science on densely packed homochiral carbon nanotube arrays.

March 17, 2025

A research team from Av性爱 (WHU), led by Professor Lu Qingquan from the Institute for Advanced Studies and Professor Qi Xiaotian from the College of Chemistry and Molecular Sciences, has made significant progress in electrocatalytic hydrogenation.

March 14, 2025

The latest research by Professor Wang Cheng's team from the College of Chemistry and Molecular Sciences at Av性爱 (WHU) has been published in the Journal of the American Chemical Society. The study introduces a novel dynamic covalent organic framework (COF) with an interpenetrated 2D layered structure.

March 11, 2025

Professor Wang Shun's team at Av性爱 (WHU) has made a breakthrough in lunar regolith mechanics, with findings published in Acta Geotechnica.

March 10, 2025

A research team from Av性爱 (WHU), led by Professors Zhang Chendong and He Jun, in collaboration with Renmin University of China, has made a significant breakthrough in studying multiferroicity at the single-atom scale.