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个人简介

教授、博士生导师;国家“杰出青年基金”获得者;教育部“长江学者特聘教授”;英国皇家化学学会会士(Fellow of the Royal Society of Chemistry, FRSC);吉林省高级专家。先后主持国家重点研发计划课题、国家高技术研究发展计划(863计划)子课题、国家重点基础研究发展计划(973计划)子课题、国家自然科学基金重点项目、国家自然科学基金重点国际合作等项目。在Chem. Rev., Chem. Soc. Rev., Acc. Chem. Res., J. Am. Chem. Soc., Angew. Chem. Int. Ed.等国际知名期刊已发表SCI研究论文200余篇,主编英文专著1部,参编8部。担任J.Biomat. Nanobiotech,General Chem., Polym. Sci., 高等学校化学学报等杂志编委。任中国生物物理学会纳米酶分会副会长、中国化学会化学生物学专业委员会委员、中国生物材料学会生物医用高分子材料分会委员、吉林省化学会理事等。获得吉林省科技进步一等奖1项(第一完成人)。吉林省自然科学学术成果一等奖1项(第一完成人)。 1983.09-1987.07 吉林大学 高分子化学与物理专业 本科 1987.07-1990.09 吉林大学 高分子化学与物理专业 硕士 1996.07-1999.12 吉林大学 高分子化学与物理专业 博士 2001.12-2003.09 海涅杜塞尔多夫大学 高分子化学 博士后

研究领域

主要从事仿生化学、化学生物学、纳米生物功能材料等方面的研究

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Ruizhen Tian, Hongyin Ma, Wei Ye, Yijia Li, Shiping Wang, Zherui Zhang, Shengda Liu, Mingsong Zang, Jinxing Hou, Jiayun Xu, Quan Luo, Hongcheng Sun*, Fuquan Bai*, Yi Yang*, Junqiu Liu*, Se-containing MOF coated dual-Fe-atom nanozymes with multi-enzyme cascade activities protect against cerebral ischemic reperfusion injury. Adv. Funct. Mater. 2022. 2204025. (IF: 18.808) Yijia Li, Chunlei Xia, Ruizhen Tian, Linlu Zhao, Jinxing Hou, Jieqiong Wang, Quan Luo, Jiayun Xu, Liang Wang, Chunxi Hou, Bai Yang, Hongcheng Sun*, Junqiu Liu*, “On/Off” switchable sequential light-harvesting systems based on controllable protein nanosheets for regulation of photocatalysis. ACS Nano, 2022. 16, 8012-8021. (IF: 15.881)[Link] Tengfei Yan, Shengda Liu, Jiayun Xu, Hongcheng Sun*, Shuangjiang Yu*, Junqiu Liu*, Unimolecular helix-based transmembrane nanochannel with a smallest luminal cavity of 1 Å expressing high proton selectivity and transport activity. Nano Lett, 2021, 21, 10462-10468. (IF: 11.189) Shengda Liu, Shanpeng Qiao, Tengfei Yan, Xiumei Li, Shuangjiang Yu, Hongcheng Sun*, Jiayun Xu, Junqiu Liu*, Giant nanotubes equipped with horseradish peroxidase active sites: a powerful nanozyme co-assembled from supramolecular amphiphiles for glucose detection. Chem. Eng. J. 2022, 429, 132592. (IF: 16.744) Jieqiong Wang, Fei Li, Zhengwei Xu, Mingsong Zang, Shengda Liu, Tianhe Li, Jiayun Xua, Hongcheng Sun*, Shuangjiang Yu*, Junqiu Liu*, Bacteria-triggered radical anions amplifier of pillar[5]arene/perylene diimide nanosheets with highly selective antibacterial activity. Chem. Eng. J. 2022, 444, 136620. (IF: 16.744) Tengfei Yan, Shengda Liu, Cong Li, Jiayun Xu, Shuangjiang Yu, Tingting Wang*, Hongcheng Sun*, Junqiu Liu, Flexible single-chain-heteropolymer-derived transmembrane ion channels with high K+ selectivity and tunable pH-gated characteristics. Angew. Chem. Int. Ed. 2022. Accepted. (IF: 16.823)[Link] Yeye Ai, Yuexuan Fei, Zhu Shu,Yihang Zhu, Junqiu Liu, Yongguang Li*,Visible-light-controlled ternary chiroptical switches with high-performance circularly polarized luminescence for advanced optical information storage and anti-counterfeiting materials. Chem. Eng. J. 2022, 450, 138390. (IF: 16.744) Shengda Liu, Yunpeng Xing, Tengfei Yan, Yijia Li, Ruizhen Tian, Jinxing Hou, Jiayun Xu, Tingting Wang*, Junqiu Liu*, Regulation of artificial supramolecular transmembrane signal transduction by selenium-containing artificial enzyme receptors, Nano Research, 2022, Accepted (IF: 10.269) Yeye Ai, Yongguang Li,* Michael Ho-Yeung Chan, Guanjun Xiao, Bo Zou*, Vivian Wing-Wah Yam*, Realization of distinct mechano- and piezochromic behaviors via alkoxy chain length-modulated phosphorescent properties and multidimensional self-assembly structures of dinuclear Platinum(II) complexes. J. Am. Chem. Soc. 2021, 143, 10659-10667 (IF: 15.419). Tengfei Yan, Shengda Liu, Jiayun Xu, Hongcheng Sun*, Shuangjiang Yu*, Junqiu Liu*, Unimolecular helix-based transmembrane nanochannel with a smallest luminal cavity of 1 A expressing high proton selectivity and transport activity. Nano Lett. 2021, 21, 10462-10468 (IF:11.189). Ximei Liu, Wanjia Xu, Yue Xin, Jiawei Yuan, Yuancheng Ji, Shengnan Chun, Junqiu Liu, Quan Luo*, Supramolecular polymer nanocomposites for biomedical applications. Polymers, 2021, 13, 513. Yijia Li, Linlu Zhao, Hongwei Chen, Ruizhen Tian, Fei Li, Quan Luo, Jiayun Xu, Chunxi Hou*, Junqiu Liu*, Hierarchical protein self-assembly into dynamically controlled 2D nanoarrays via host–guest chemistry. Chem Commun. 2021, 57, 81, 10620-10623 (IF:6.222). Shengda Liu, Tengfei Yan, Jianxin Sun, Fei Li, Jiayun Xu, Hongcheng Sun, Shuangjiang Yu*, Junqiu Liu, Biomimetic cascade polymer nanoreactors for starvation and photodynamic cancer therapy. Molecules, 2021 26, 18, 5609 (IF:4.412).[Link] Tengfei Yan, Shengda Liu, Yichen Luo, Yingping Zou*, Junqiu Liu*, Research progress on the macrocycle-derived artificial transmembrane ion channels. Acta Chim Sinica, 2021, 79, 8, 999-1007 (IF:2.668).[Link] Xiaojia Jiang, Mingsong Zang, Fei Li, Chunxi Hou, Quan Luo, Jiayun Xu, Junqiu Liu*, Highly sensitive detection of paraquat with pillar[5]arenes as an aptamer in an alpha-hemolysin nanopore. Mater Chem Front, 2021, 5, 18, 7032-7040(IF:6.482).[Link] Shengda Liu, Jiayun Xu, Yunpeng Xing, Tengfei Yan, Shuangjiang Yu, Hongcheng Sun*, Junqiu Liu*, Nanozymes as efficient tools for catalytic therapeutics. View 2021, 20200147. Tingting Wang, Xiaotong Fan, Ruyu Li, Jiayun Xu*, Junqiu Liu*, Multi-Enzyme-Synergetic ultrathin protein nanosheets display high efficient and switch on/off antibacterial activities. Chem. Eng. J. 2021, 416, 129082 (IF:13.273). Fei Li, Mingsong Zang, Jinxing Hou, Quan Luo, Shuangjiang Yu, Hongcheng Sun, Jiayun Xu*, Junqiu Liu*, Cascade catalytic nanoplatform constructed by laterally-functionalized pillar[5]arenes for antibacterial chemodynamic therapy. J. Mater. Chem. B, 2021, 9, 25, 5069-5075 (IF:6.331). Shengda Liu, Jiayun Xu, Xiumei Li, Tengfei Yan, Shuangjiang Yu, Hongcheng Sun*, Junqiu Liu*, Template-free self-assembly of two-dimensional polymers into nano/microstructured materials. Molecules 2021, 26, 11, 3310 (IF:4.411). Ruyu Li, Jiayun Xu, Tingting Wang, Liang Wang, Fei Li, Shengda Liu, Xiaojia Jiang, Quan Luo*, Junqiu Liu*, Dynamically tunable ultrathin protein membranes for controlled molecular separation. ACS Appl. Mater. Interfaces 2021, 13, 10, 12359-12365 (IF:9.229).

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