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

Near-100% site utilization of single atoms for efficient electrocatalysis

单原子位点利用率接近100%,实现高效电催化

Wei, Xiaoqian; An, Meng; Tang, Xiannong; Wei, Jiamin; Yan, Peng; Qiu, Yiwei; Jiang, Dong; Asakura, Yusuke; Song, Xiaokai; Asahi, Tour; Zhu, Chengzhou; Yamauchi, Yusuke

Reversible bismuth reduction-driven dark photoelectrochemistry

可逆铋还原驱动的暗光电化学

Qin, Ying; Chen, Yuanxing; Wan, Haifei; Wu, Siting; Zhang, Jingyi; Yang, Wenhong; Chen, Yifei; Hu, Liuyong; Gu, Wenling; Zhu, Chengzhou

FBXO11 suppression rewires an NPM1-centered interactome influencing the progression of myelodysplastic syndrome

FBXO11抑制重塑以NPM1为中心的相互作用组,从而影响骨髓增生异常综合征的进展。

Niederkorn, Madeline; Bezavada, Lavanya; Cotton, Anitria; Palmer, Lance E; Konada, Lahiri; Hall, Trent; Pagala, Vishwajeeth R; Zhai, Jinbin; Yuan, Zuo-Fei; Fu, Yingxue; Steele, Jacob A; Narina, Shilpa; Schild, Andrew; Wu, Chengzhou; Aminov, Sarah; Schieber, Michael; McGovern, Erin; Taylor, Aaron B; Gurbuxani, Sandeep; Xu, Peng; Ji, Peng; Janke, Laura J; High, Anthony A; Kang, Guolian; Pruett-Miller, Shondra M; Weiss, Mitchell; Verma, Amit; Rampal, Raajit K; Crispino, John D

Mechanism of cancer-associated fibroblast-driven thyroid cancer dedifferentiation via the ZFP57-PKM2 axis-mediated lactate secretion and therapeutic intervention with resveratrol​

通过ZFP57-PKM2轴介导的乳酸分泌,癌症相关成纤维细胞驱动的甲状腺癌去分化的机制及白藜芦醇的治疗干预

Ji, Xiaoyu; Lv, Chengzhou; Wu, Xian; Wu, Hongpeng; Chang, Yuang; Liu, Qi; Dong, Wenwu; Huang, Jiapeng; Zhang, Dalin; Diao, Yao; Sun, Dapeng; Wang, Zhihong; Zhang, Ping; Sun, Wei; Zhang, Hao

Dissecting the immunosuppressive microenvironment of LAMA3 + malignant cells and SPP1 + macrophages in esophageal squamous cell carcinoma using single-cell and spatial transcriptomics

利用单细胞和空间转录组学技术解析食管鳞状细胞癌中LAMA3+恶性细胞和SPP1+巨噬细胞的免疫抑制微环境

Hong, Kunqiao; Pa, Chengzhou; Zhu, Yijie; Dai, Yunrui; Qi, Jialong; Wan, Ping

Atomic Ce sites promote a four-electron pathway of Pt as NADH oxidase mimics for in situ coenzyme regeneration

原子Ce位点促进Pt作为NADH氧化酶模拟物进行四电子途径,从而实现辅酶的原位再生。

Tang, Yinjun; Chen, Yifei; Qi, Pengcheng; Li, Ruimin; Jiang, Wenxuan; Sun, Hongcheng; Gu, Wenling; Zhu, Chengzhou

Artificial intelligence-driven gastrointestinal functional assessment: multimodal imaging, digital biomarkers, and real-time monitoring

人工智能驱动的胃肠功能评估:多模态成像、数字生物标志物和实时监测

Li, Liucheng; Lv, Fang; Du, Chen; Yang, Lianjun; Pa, Chengzhou; Dai, Yunrui

Lattice atom-bridged chemical bond interface facilitates charge transfer for boosted photoelectric response

晶格原子桥接的化学键界面促进电荷转移,从而增强光电响应。

Liu, Mingwang; Yang, Wenhong; Xiao, Runshi; Li, Jinli; Tan, Rong; Qin, Ying; Bai, Yuxuan; Zheng, Lirong; Hu, Liuyong; Gu, Wenling; Zhu, Chengzhou

Topology-controlled Pt atomic sites enhance electron utilization efficiency for NAD(+) regeneration and alcohol detoxification

拓扑结构控制的Pt原子位点可提高NAD(+)再生和醇解毒的电子利用效率

Tang, Yinjun; Qi, Pengcheng; Chen, Yifei; Li, Jian; Jiang, Wenxuan; Sun, Hongcheng; Gu, Wenling; Sun, Yao; Zhu, Chengzhou

Pt nanocluster-Fe single atom pairs dual-regulate charge extraction and interfacial reaction for enhanced photoelectric response

Pt纳米团簇-Fe单原子对双重调控电荷提取和界面反应,从而增强光电响应

Chen, Yuanxing; Qin, Ying; Liu, Mingwang; Yang, Wenhong; Qiu, Yiwei; Li, Wen; Zheng, Lirong; Gu, Wenling; Zhu, Chengzhou; Hu, Liuyong