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

A Small Molecule Selectively Targets N-Myc to Suppress Neuroblastoma Cancer Progression.

一种小分子选择性靶向N-Myc以抑制神经母细胞瘤的进展

Miao Ying, Chen Huang, Li Yuzhan, Li Liting, Ye Jiangnan, Zhang Jingwen, Wang Jiayu, Wu Haigang, Li Guihong, Chen Yihua, Yi Zhengfang, Liu Mingyao

3D Printing of Thermally Responsive Shape Memory Liquid Crystalline Epoxy Networks

热响应形状记忆液晶环氧树脂网络的3D打印

Pekol, Collin; Furst, Jacob; Li, Yuzhan; Keum, Jong; Harper, David P

Design and Characterization of Deformable Superstructures Based on Amine-Acrylate Liquid Crystal Elastomers

基于胺-丙烯酸酯液晶弹性体的可变形超结构的设计与表征

Zhao, Fang; Li, Yuzhan; Gao, Hong; Tao, Ran; Mao, Yiqi; Chen, Yu; Zhou, Sheng; Zhao, Jianming; Wang, Dong

Research Progress of Electrically Driven Multi-Stable Cholesteric Liquid Crystals

电驱动多稳态胆甾型液晶的研究进展

Wang, Kainan; Hu, Wentuo; He, Wanli; Yang, Zhou; Cao, Hui; Wang, Dong; Li, Yuzhan

Research Progress of Cholesteric Liquid Crystals with Broadband Reflection

宽带反射胆甾型液晶的研究进展

Zhou, Huimin; Wang, Hao; He, Wanli; Yang, Zhou; Cao, Hui; Wang, Dong; Li, Yuzhan

H-Bonding Room Temperature Phosphorescence Materials via Facile Preparation for Water-Stimulated Photoluminescent Ink

通过简便方法制备氢键室温磷光材料,用于水刺激光致发光墨水

Lou, Lingyun; Xu, Tianqi; Li, Yuzhan; Zhang, Changli; Wang, Bochun; Zhang, Xusheng; Zhang, Hean; Qiu, Yuting; Yang, Junyan; Wang, Dong; Cao, Hui; He, Wanli; Yang, Zhou

Spatial Patterning of Fluorescent Liquid Crystal Ink Based on Inkjet Printing

基于喷墨打印的荧光液晶墨水空间图案化

Zhang, Lei; Cui, Yongfeng; Wang, Qi; Zhou, Huimin; Wang, Hao; Li, Yuzhan; Yang, Zhou; Cao, Hui; Wang, Dong; He, Wanli

Research Progress on Blue-Phase Liquid Crystals for Pattern Replication Applications

用于图案复制应用的蓝相液晶的研究进展

Wang, Hao; Zhou, Huimin; He, Wanli; Yang, Zhou; Cao, Hui; Wang, Dong; Li, Yuzhan

Ophiopogonin B induces gastric cancer cell death by blocking the GPX4/xCT-dependent ferroptosis pathway

麦冬皂苷B通过阻断GPX4/xCT依赖的铁死亡途径诱导胃癌细胞死亡

Liyi Zhang, Chunlei Li, Yuzhan Zhang, Jinwen Zhang, Xiaolei Yang

ZnO nanoparticle-based seed priming modulates early growth and enhances physio-biochemical and metabolic profiles of fragrant rice against cadmium toxicity

基于氧化锌纳米颗粒的种子预处理可调节香米早期生长,并增强其生理生化和代谢特性,从而提高其对镉毒害的抵抗力。

Li, Yuzhan; Liang, Luxin; Li, Wu; Ashraf, Umair; Ma, Lin; Tang, Xiangru; Pan, Shenggang; Tian, Hua; Mo, Zhaowen