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

Direct observation of the Migdal effect induced by neutron bombardment

直接观察中子轰击引起的米格达尔效应

Yi, Difan; Liu, Qian; Chen, Shi; Dong, Chunlai; Feng, Huanbo; Gao, Chaosong; Huang, Wenqian; Jing, Xinmei; Kong, Lingquan; Li, Jin; Li, Peirong; Liang, Enwei; Ma, Ruiting; Su, Chenguang; Su, Liangliang; Sun, Junwei; Wang, Dong; Wang, Junrun; Wei, Zheng; Yao, Zeen; Yu, Yunlinchen; Zhang, Yu; Zhou, Shiqiang; Zhou, Zhuo; Zhu, Bin; Zuo, Jie; Liu, Hongbang; Sun, Xiangming; Wu, Lei; Zheng, Yangheng

LightIN: a versatile silicon-integrated photonic field programmable gate array with an intelligent configuration framework for next-generation AI clusters

LightIN:一款多功能硅集成光子场可编程门阵列,具有智能配置框架,适用于下一代人工智能集群

Zhu, Ying; Liu, Yifan; Yang, Xinyu; Liu, Kailai; Hua, Xin; Luo, Ming; Liu, Jia; Chang, Siyao; Yan, Jie; Zhang, Shengxiang; Wu, Miao; Wang, Zhicheng; Zhang, Hongguang; Wang, Dong; Chen, Daigao; Xiao, Xi; Yu, Shaohua

Corrigendum to "Mitochondria-targeted MXene@MnO(2)-TPP nanoheterostructures for synergistic enhancement of sonodynamic therapy and immunotherapy in osteosarcoma" [Bioact. Mat. 54 (2025) 450-465]

对“线粒体靶向 MXene@MnO(2)-TPP 纳米异质结构在骨肉瘤声动力疗法和免疫疗法中的协同增强作用”的更正 [Bioact. Mat. 54 (2025) 450-465]

Zeng, Jin; Yan, Zuyun; Wang, Dong; He, Tao; Tong, Zhaochen; Miao, Jinglei; Li, Jinsong; Tan, Wei; Chen, Shijie; Deng, Youwen

Manganese-potentiated cGAS-STING activation with ATM/PRMT5 inhibition remodels the immunosuppressive microenvironment in osteosarcoma via bone-targeted delivery

锰增强的cGAS-STING激活联合ATM/PRMT5抑制通过骨靶向递送重塑骨肉瘤中的免疫抑制微环境

Tong, Zhaochen; Li, Yuezhan; Zhang, Lingpu; Wen, Sijie; Wang, Dong; Li, Zixin; Peng, Yi; Wang, Weiguo; Miao, Jinglei; Xiao, Haihua; Xu, Dabao; Li, Jinsong; Chen, Shijie

Gynostemma pentaphyllum-derived extracellular vesicles alleviate skin aging by destabilizing STING

绞股蓝来源的细胞外囊泡通过破坏STING结构来缓解皮肤衰老。

Wang, Dong; Duan, Shaoliang; Fan, Yujuan; Chen, Tongqing; Hao, Yuxuan; Liang, Yanan; Ni, Jiahui; Wang, Xiao; Shen, Xiaoyan; Cao, Guoqi; You, Yan; Liu, Zhenzhong; Xia, Huitang

Interferon-stimulated gene GALNT2 restricts respiratory virus infections

干扰素刺激基因GALNT2抑制呼吸道病毒感染

Ran, Wei; Yang, Jinghong; Yu, Shi; Hu, Qingtao; He, Yuqi; Wang, Shengjun; Wei, Cheng; Sun, Jing; Zhu, Airu; Li, Fang; Zhang, Lu; Li, Pengfei; Hu, Huina; Pan, Ruangang; Yu, Yanying; Yuan, Yanqiu; Sun, Lingyu; Wang, Yanqun; Zhang, Zhaoyong; Chen, Zhao; Liu, Donglan; Yan, Qihong; Wang, Dong; Yu, Kuai; Wang, Yiliang; Zhuo, Jianfen; Zhuang, Zhen; Tao, Hua; Zeng, Qiuhui; Zhou, Kaixin; Chen, Fenghua; Tang, Wenxuan; Zhou, Yuzheng; Bai, Rong; Xu, Yonghao; Li, Na; Dai, Jun; Zhao, Hongyu; Park, Jung-Eun; Wang, Tao; Ding, Qiang; Perlman, Stanley; Zhao, Jingxian; Mao, Yang; Wang, Shaobo; Zhao, Jincun

Organ-specific proteomic aging clocks predict disease and longevity across diverse populations

器官特异性蛋白质组衰老时钟可预测不同人群的疾病和寿命

Wang, Yunhe; Xiao, Sihao; Liu, Bowen; Jiang, Rongtao; Liu, Yuxi; Hang, Yian; Chen, Li; Chen, Runsen; Vitiello, Michael V; Bennett, Derrick; Wang, Baihan; Lv, Jun; Yu, Canqing; Haslam, Danielle E; Zheng, Qianyan; Gerszten, Robert E; Bao, Yanping; Shi, Jie; Xie, Junqing; Lu, Lin; Li, Liming; van Duijn, Cornelia M; Wang, Dong D; Chen, Zhengming; Chan, Andrew T

Capacity-expanding O/Cl-bridged catholyte boosts energy density in zero-pressure all-solid-state lithium batteries

容量扩展型O/Cl桥接阴极电解液可提高零压全固态锂电池的能量密度

Liu, Houyi; Liang, Shuaika; Duan, Yuhao; Li, Guanwu; Wang, Dong; Zhang, Hongzhang; Xia, Wei; Yang, Xiaofei; Li, Xianfeng

Mechanically compliant and cost-effective 1.4Li(2)O-0.75ZrCl(4)-0.25AlCl(3) solid electrolyte for all-solid-state batteries with improved cycling stability

一种机械性能良好且经济高效的1.4Li₂O-0.75ZrCl₄-0.25AlCl₃固体电解质,适用于具有改进循环稳定性的全固态电池。

Hu, Lv; He, Yaolong; Wang, Dong; Li, Wanxia; Yao, Jingming; Zhang, Xiaolong; Zhu, Jinfeng; Chen, Huaican; Yin, Wen; Wang, Yanru; Yan, Kejun; Wang, Jinzhu; Li, Hui; Chen, Fang; Liu, Yating; Lai, Junqi; Chen, Qi; Ma, Jie; Jiao, Shuhong; Wang, Guorui; Shi, Siqi; Chen, Liwei; Huang, Jianyu; Ma, Cheng

Ultrahigh energy storage density and efficiency in AgNbO(3)-based ceramics by percolating interaction between antipolar regions and defect pairs

通过反极性区域和缺陷对之间的渗流相互作用,在AgNbO(3)基陶瓷中实现了超高的储能密度和效率。

He, Liqiang; Zhang, Le; Ran, Yating; Bo, Cunle; Chen, Kaiyun; Liu, Yao; Zhang, Chen; Zheng, Zihao; Guo, Jinming; Wang, Danyang; Zhang, Shujun; Yang, Sen; Ren, Xiaobing; Chen, Zibin; Wang, Dong