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收藏Intracellular self-assembled nanoneedles for efficient lysosomal escape and CRISPR/Cas9 mediated gene editing细胞内自组装纳米针,用于高效溶酶体逃逸和CRISPR/Cas9介导的基因编辑
Zhang, Chen; Zhang, Nan; Yang, Ruiqi; Qiu, Qian; Huang, Jiaying; Liu, Jingang; Li, Silu; Lovell, Jonathan F.; Ren, He; Zhang, Yumiao
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收藏Boosting Oxygen Reduction Reaction through Substrate Fluorination-Mediated d-Band Center Tuning and Microenvironment Optimization of Molecular Catalysts通过基底氟化介导的d带中心调控和分子催化剂微环境优化来增强氧还原反应
Yang, KZ; Su, YZ; Xu, C; Guo, PP; Zhao, YM; Liu, X; Jia, L; Yang, Y; Zhu, HN; Wei, PJ; Liu, JG
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收藏Regulating the Electronic Configuration of Single-Atom Catalysts with Fe-N5 Sites via Environmental Sulfur Atom Doping for an Enhanced Oxygen Reduction Reaction通过环境硫原子掺杂调节具有Fe-N5位点的单原子催化剂的电子构型,以增强氧还原反应
Yang, Kun-Zu; Xu, Chao; Guo, Peng-Peng; Zhao, Ye-Min; Chi, Hua-Min; Xu, Ying; Wei, Ping-Jie; Zheng, Tianlong; He, Qinggang; Ren, Qizhi; Liu, Jin-Gang
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收藏Creating Asymmetric Fe-N3C-N Sites in Single-Atom Catalysts Boosts Catalytic Performance for Oxygen Reduction Reaction在单原子催化剂中产生不对称Fe-N3C-N位点可提高氧还原反应的催化性能
Xu, Chao; Li, Xuewen; Guo, Peng-Peng; Yang, Kun-Zu; Zhao, Ye-Min; Chi, Hua-Min; Xu, Ying; Wei, Ping-Jie; Wang, Zhi-Qiang; Xu, Qing; Liu, Jin-Gang
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收藏Bioinspired molecular catalysts with a unique tricopper architecture for highly efficient oxygen reduction reaction
Guo, Peng-Peng; Xu, Chao; Yang, Kun-Zu; Lu, Chen; Chi, Hua-Min; Xu, Ying; Su, Yong-Zhi; Liu, Xin; Wei, Ping-Jie; Liu, Jin-Gang
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