邓留
- 学位:博士学位
- 职称:教授
- 所在单位:化学化工学院
教授
博士生导师
硕士生导师
入职时间:
2011-03-10
所在单位:
化学化工学院
学历:
博士研究生毕业
办公地点:
中南大学新校区化学化工学院429室
性别:
女
联系方式:
dengliu@csu.edu.cn
学位:
博士学位
在职信息:
在职
毕业院校:
中科院长春应化所
论文成果
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[1]Xiaoli Cai, Renyu Liu, Hongye Yan, Lei Jiao, Meng Sha, Yifeng Chen, Shuang Rong, Zhengzheng Liu, Liu Deng*, Liangfang Shen*, Chengzhou Zhu*.Cascaded Nanozyme with In Situ Enhanced Photothermal Capacity for Tumor-Specific and Self-Replenishing Cancer Therapy[J].Advancd Healthcare Materials, 2023: 2300516.
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[2]Lei Jiao, Na Tao, Yikun Kang, Weiyu Song, Yifeng Chen, Yu Zhang, Weiqing Xu, Yu Wu, Wenling Gu, Lirong Zheng, Limiao Chen, Liu Deng*, Chengzhou Zhu*, and You-Nian Liu*.Biomimetic Fe-Cu Dual-atomic-site catalysts enable efficient H2O2 activation for tumor lymphatic metastasis inhibition[J].Nano Today, 2023, 50: 101859.
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[3]Wei Wang, Xiao Yu, Haichuan He, Yan Wang, Yanan Li, Liu Deng*, and You-Nian Liu*.Electrochemical reconstitution of Prussian blue analogue for coupling furfural electro-oxidation with photo-assisted hydrogen evolution reaction[J].Chemical Engineering Journal, 2023, 465 (1) : 142865.
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[4]Senfeng Zhao, Huihuang Li, Renyu Liu, Na Tao, Liu Deng*, Qianqian Xu, Jianing Hou, Jianping Sheng, Jia Zheng, Liqiang Wang, Wansong Chen, Shaojun Guo*, and You-Nian Liu*.Nitrogen-Centered Lactate Oxidase Nanozyme for Tumor Lactate Modulation and Microenvironment Remodeling[J].Journal of the American Chemical Society, 2023, 145 (18) : 10322–10332.
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[5]Yanan Li, Yan Wang, Wei Wang, Xiao Yu, Li Zhang, Liu Deng*, and You-Nian Liu*.Covalent-Coupled Zn0.4Cd0.6S with g-C3N4 as a Sheet-on-Sheet Z-Scheme Photocatalyst for Water Splitting[J].Industrial & Engineering Chemistry Research, 2023, 62 (8) : 3538–3545.
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[6]Yan Wang, Zhao Hu, Wei Wang, Yanan Li, Haichuan He, Liu Deng*, Yi Zhang, Jianhan Huang, Ning Zhao, Guipeng Yu, and You-Nian Liu*.Rational design of defect metal oxide/covalent organic frameworks Z-scheme heterojunction for photoreduction CO2 to CO[J].Applied Catalysis B: Environmental, 2023, 327 (15) : 122419.
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[7]Renyu Liu, Jiangping Sheng, Ke Zeng, Yuanyuan Deng, Liu Deng*, Lin Shen*, and You-Nian Liu*.Nanoarchitectonics with Two-Dimensional Black Phosphorus and MnO2 for Synergistic Photodynamic-/Radiotherapy Against Cancer through Enhanced Reactive Oxygen Species Activity[J].Advanced Therapeutics, 2022, 5 (2) : 2100210.
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[8]Na Tao, Zhiling Zeng, Yuanyuan Deng, Limiao Chen, Jianghua Li, Liu Deng*, and You-Nian Liu*.Stanene nanosheets-based hydrogel for sonodynamic treatment of drug-resistant bacterial infection[J].Chemical Engineering Journal, 2022, 456 (15) : 141109.
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[9]Jian Wu, Xiao Yu, Haichuan He, Congcheng Yang, Dan Xia, Liqiang Wang, Jianhan Huang, Ning Zhao, Feiying Tang, Liu Deng*, and You-Nian Liu*.Bismuth-Nanosheet-Based Catalysts with a Reconstituted Bi 0 Atom for Promoting the Electrocatalytic Reduction of CO2 to Formate[J].Industrial & Engineering Chemistry Research, 2022, 61 (34) : 12383–12391.
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[10]Haichuan He, Dan Xia, Xiao Yu, Jian Wu, Yan Wang, Liqiang Wang, Linlin Wu, Jianhan Huang, Ning Zhao, Liu Deng*, and You-Nian Liu*.Pd-SnO2 interface enables synthesis of syngas with controllable H2/CO ratios by electrocatalytic reduction of CO2Pd-SnO2 interface enables synthesis of syngas with controllable H2/CO ratios by electrocatalytic reduction of CO2[J].Applied Catalysis B: Environmental, 2022, 312 (5) : 121392.
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[11]Haichuan He, Jian Wu, Xiao Yu, Dan Xia, Yan Wang, Fei Chen, Liqiang Wang, Linlin Wu, Jianhan Huang, Ning Zhao, Liu Deng*, and You-Nian Liu*.Dual-active sites design of Snx-Sby-O-GO nanosheets for enhancing electrochemical CO2 reduction via Sb-accelerating water activation[J].Applied Catalysis B: Environmental, 2022, 307 (15) : 121171.
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[12]Ling Zhang, Senfeng Zhao, Jiang Ouyang,* Liu Deng,* and You-Nian Liu*.Oxygen-deficient tungsten oxide perovskite nanosheets-based photonic nanomedicine for cancer theranostics[J].Chemical Engineering Journal, 2022, 431 (1) : 133273.
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[13]Na Tao, Huihuang Li, Liu Deng*, Senfeng Zhao, Jiang Ouyang, Mei Wen, Wansong Chen, Ke Zeng, Chuanwan Wei, and You-Nian Liu*.A Cascade Nanozyme with Amplified Sonodynamic Therapeutic Effects through Comodulation of Hypoxia and Immunosuppression against Cancer[J].ACS Nano, 2021, 16 (1) : 485–501.
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[14]Yan Wang, Zhao Hu, Wei Wang, Haichuan He, Liu Deng,* Yi Zhang, Jianhan Huang, Ning Zhao, Guipeng Yu,* and You-Nian Liu*.Design of well-defined shell–core covalent organic frameworks/metal sulfide as an efficient Z-scheme heterojunction for photocatalytic water splitting[J].Chemical Science, 2021, 12: 16065-16073.
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[15]Senfeng Zhao, Ling Zhang, Liu Deng,* Jiang Ouyang, Qianqian Xu, Xinyu Gao, Zhilin Zeng, and You-Nian Liu*.NIR-II Responsive Hydrogel as an Angiogenesis Inhibition Agent for Tumor Microenvironment Reprogramming[J].Small, 2021, 17 (47) : 2103003.
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[16]Haichuan He, Congcheng Yang, Liu Deng,* Jian Wu, Fei Chen, Jianhan Huang and You-Nian Liu*.Inside-mode indium oxide/carbon nanotubes for efficient carbon dioxide electroreduction by suppressing hydrogen evolution[J].Chemical Communications, 2020, 57: 1234-1237.
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[17]Haichuan He, Kang Liu, Kaixin Liang, Abdulhadi Mustapha, Zheng Wang, Linlin Wu, Congcheng Yang, Liu Deng,* Shaojun Guo, and You-Nian Liu*.Boosting carbon dioxide electroreduction to C1 feedstocks via theory-guided tailoring oxygen defects in porous tin-oxide nanocubes[J].Journal of Catalysis, 2020, 385: 246-254.
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[18]Jianping Sheng, Ling Zhang, Liu Deng*, Yajing Han, Liqiang Wang, Haichuan He, and You-Nian Liu*.Fabrication of dopamine enveloped WO3?x quantum dots as single-NIR laser activated photonic nanodrug for synergistic photothermal/photodynamic therapy against cancer[J].Chemical Engineering Journal, 2019, 383 (1) : 123071.
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[19]Qunfang Xu, Senfeng Zhao, Liu Deng,* Jiang Ouyang, Mei Wen, Ke Zeng, Wansong Chen, Ling Zhang and You-Nian Liu*.A NIR-II light responsive hydrogel based on 2D engineered tungsten nitride nanosheets for multimode chemo/photothermal therapy[J].Chemical Communications, 2019, 55: 9471-9474.
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[20]Liqiang Wang, Kaixin Liang, Liu Deng,* and You-Nian Liu*.Protein hydrogel networks: A unique approach to heteroatom self-doped hierarchically porous carbon structures as an efficient ORR electrocatalyst in both basic and acidic conditions[J].Applied Catalysis B: Environmental, 2019, 246 (5) : 89-99.