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

Tailoring ordered structures with distorted [TeO(3)] and aligned [ScO(6)] motifs for balanced nonlinear optical properties in rare-earth tellurate crystals

通过调控具有扭曲[TeO(3)]和排列[ScO(6)]基元的有序结构,实现稀土碲酸盐晶体中非线性光学性质的平衡

Wang, Xiaoxu; Zhang, Tinghui; Zhao, Huijian; Jia, Ning; Liu, Hongjun; Ye, Ning; Hu, Zhanggui; Li, Conggang

Visualize Transient Water-Mediated Hydrogen Bonds Facilitating the Formation of Enzymatic Near-Attack Conformers

可视化瞬态水介导氢键促进酶促近攻击构象异构体的形成

Xia, Wenqing; Chen, Jiawen; Jiang, Ling; Lu, Meng; Liu, Maili; Yang, Minghui; Li, Conggang; Liu, Yixiang

Aromatic-aromatic interactions drive fold switch of GA95 and GB95 with three residue difference

芳香-芳香相互作用驱动GA95和GB95的折叠转换,二者仅有三个残基差异

Chen, Chen; Zhang, Zeting; Duan, Mojie; Wu, Qiong; Yang, Minghui; Jiang, Ling; Liu, Maili; Li, Conggang

Hydrogen bonding regulation-oriented design of pyridine sulfonate as a promising UV birefringent crystal characterized by enhanced structural anisotropy

以氢键调控为导向的吡啶磺酸盐设计,使其成为一种具有增强结构各向异性的潜在紫外双折射晶体

Xu, Longyun; Li, Conggang; Li, Shuaifeng; Zhao, Huijian; Kong, Xianghao; Qu, Zaixin; Feng, Wenjie; Xu, Kaidong; Ye, Ning; Hu, Zhanggui

A TeZla micromixer for interrogating the early and broad folding landscape of G-quadruplex via multistage velocity descending

TeZla 微型混合器通过多级速度下降法研究 G-四链体的早期和广泛折叠情况

Li, Zheyu; Hu, Rui; Li, Tao; Zhu, Jiang; You, Huijuan; Li, Yiwei; Liu, Bi-Feng; Li, Conggang; Li, Ying; Yang, Yunhuang

Progress, Challenges and Opportunities of NMR and XL-MS for Cellular Structural Biology

核磁共振和交联质谱在细胞结构生物学中的进展、挑战和机遇

Zhang, Zeting; Zhao, Qun; Gong, Zhou; Du, Ruichen; Liu, Maili; Zhang, Yukui; Zhang, Lihua; Li, Conggang

A bifunctional primitive strategy induces enhancements of large second harmonic generation and wide UV transmittance in rare-earth borates containing [B(5)O(10)] groups

一种双功能原始策略可显著增强含[B(5)O(10)]基团的稀土硼酸盐的二次谐波产生和紫外透射率。

Li, Shuaifeng; Li, Weiming; Li, Xiang; Yang, Guangsai; Ye, Ning; Hu, Zhanggui; Wu, Yicheng; Li, Conggang

Trimethylamine N-oxide (TMAO) doubly locks the hydrophobic core and surfaces of protein against desiccation stress

三甲胺N-氧化物(TMAO)通过双重作用锁定蛋白质的疏水核心和表面,使其免受干燥胁迫。

Ru, Geying; Liu, Xiaoli; Ge, Yuwei; Wang, Liying; Jiang, Ling; Pielak, Gary; Liu, Maili; Li, Conggang

NMR spectroscopy for metabolomics in the living system: recent progress and future challenges

核磁共振波谱在生物代谢组学中的应用:最新进展与未来挑战

Peng, Yun; Zhang, Zeting; He, Lichun; Li, Conggang; Liu, Maili

Distinct Inhibition Modes of New Delhi Metallo-β-lactamase-1 Revealed by NMR Spectroscopy

核磁共振波谱揭示新德里金属β-内酰胺酶-1的独特抑制模式

Cheng, Kai; Wu, Qiong; Yao, Chendie; Chai, Zhaofei; Jiang, Ling; Liu, Maili; Li, Conggang