论文著作:
[1]Y. Chen, G. Wang, Y. Zhang, Y. -N. Liu, Recent advances in bifunctional carbon-based single-atom electrocatalysts for rechargeable zinc-air batteries.Green Chem., 2024, 27: 27:293-324.
[2]W. Wang, H. He, L. Deng, Y. -N. Liu, Overall photosynthesis of hydrogen peroxide with redox-active catechol moiety by modulating charge behavior of polydopamine-coated engineered carbon nitride.Appl. Catal. B, 2025, 364: 124863.
[3]Yu, M., Zhang, G., 邹理, K., Tang, F., Wang, L., Y. -N. Liu, Ni nanoparticles decorated Ni-N-C catalyst: Dual-site synergy for enhanced catalytic hydrogenation.AIChE J, 2025, 25: e18830.
[4]L. Zhang, K. Liao, Y. Li, Y. -N. Liu, Construction of CoSe2/WO3@Si multiheterojunctions for efficient photoelectrochemical water splitting..Langmuir, 2025, 41: 5347-5354.
[5]S. Zhao, L. Deng, Y.-N. Liu, W. Tao, Lactate-Modulating Nanozyme-Mediated Mitochondrial Respiration Block for Tumor Immunosuppression Remodeling.Angew. Chem. Int. Ed., 2025, 64 (17) : e202422203.
[6]W. Wang, Y. Wang, L. Wu, L. Deng, Y.-N. Liu., Surface oxygen vacancies of TiO2–x enabled water transfer photocatalytic hydrogenation of nitrobenzene to aniline without use of co-catalyst[J].Chemical Engineering Science, 2024, 285: 119645.
[7]J. Zheng, Y. Deng, S Zhao, J. Li, Y.-N. Liu., Cascade-Driven Nanomotors Promote Diabetic Wound Healing by Eradicating MRSA Biofilm Infection[J].Chemical Engineering Journal, 2024, 481: 148790.
[8]W. Wang, Y. Li, X. Yu, L. Deng, Y.-N. Liu., Photothermal interface with high-adhesive superhydrophobicity to construct vapor splitting module for hydrogen evolution from seawater[J].Applied Catalysis B: Environment and Energy, 2024, 346: 12374.
[9]H. Zhao, Y. Zou, W. Chen, Y.-N. Liu., Nanotandem-rocket releases messenger to disrupt metabolic communication for antitumor immunotherapy.Nano Research, 2023, 16 (5) : 7095-7107.
[10]W. Wang, X. Yu, L. Deng, Y.-N. Liu., Electrochemical reconstitution of Prussian blue analogue for coupling furfural electro-oxidation with photo-assisted hydrogen evolution reaction.Chem. Eng. J., 2023, 465: 142865.
[11]L. Jiao, N. Tao, L. Deng, C. Zhu, Y.-N. Liu., Biomimetic Fe-Cu Dual-atomic-site catalysts enable efficient H2O2 activation for tumor lymphatic metastasis inhibition[J].Nano Today, 2023, 50: 101859.
[12]S. Zhao, H. Li, R. Liu, N. Tao, L. Deng, S. Guo, Y.-N. Liu, Nitrogen-centered lactate oxidase nanozyme for tumor lactate modulation and microenvironment remodeling[J].J. Am. Chem. Soc., 2023, 45 (18) : 10322-10332.
[13]N. Tao, L. Jiao, H. Li, L. Deng, W. Wang, S. Zhao, W. Chen, L. Chen, C. Zhu, Y.-N. Liu., A Mild Hyperthermia Hollow Carbon Nanozyme as Pyroptosis Inducer for Boosted Antitumor Immunity.ACS Nano, 2023, 17 (22) : 22844-22858.
[14]Y. Li, W, Wang, Y. Wang, H. He, X. Yu, D. Xia, L. Deng, Y. -N. Liu., Edge engineering of carbon nitride for enhanced sacrificial agent-free photocatalytic H2O2 evolution[J].Chem. Eng. Sci., 2023, 282: 119333.
[15]F. Yang, J. Wang, Y. Wang, B. Yu, Y. Cai, J. Li, L. Wu, J. Huang, Y.-N. Liu., Perfluoroalkyl-Decorated Noble-Metal-Free MOFs for the Highly Efficient One-Pot Four-Component Coupling between Aldehydes, Amines, Alkynes, and Flue Gas CO2.[J].Angew. Chem. Int. Ed., 2023, 2023: e202318115.
[16]H. Zhao, R. Liu,L. Wang, F. Tang, W. Chen, Y.-N. Liu, Artificial Macrophage with Hierarchical Nanostructure for biomimetic reconstruction of antitumor immunity[J].Nano-Micro Letter, 2023, 15: 216.
[17]Y. Li, W. Wang, X. Yu, L. Zhang, L. Deng and Y. -N. Liu, Covalent-Coupled Zn0.4Cd0.6S with g-C3N4 as a Sheet-on-Sheet Z-Scheme Photocatalyst for Water Splitting[J].Ind. Eng. Chem. Res., 2023, 62 (8) : 3538–3545.
[18]X. Zhao, L. Wang and Y.-N. Liu, Oxygen Vacancy-Reinforced Water-Assisted Proton Hopping for Enhanced Catalytic Hydrogenation[J].ACS Catal., 2023, 13: 2326–2334.
[19]Y. Wang, L. Deng and Y.-N. Liu, Rational design of defect metal oxide/covalent organic frameworks Z-scheme heterojunction for photoreduction CO2 to CO[J].Appl. Catal. B-Environ., 2023, 327: 122419.
[20]N. Tao, J. Li, L. Deng and Y.-N. Liu, Stanene nanosheets-based hydrogel for sonodynamic treatment of drug-resistant bacterial infection[J].Chem. Eng. J., 2023, 456: 141109.
发明专利:
[1]一种泡沫镍负载银掺杂四氧化三钴纳米片及其制备方法和应用, 申请号:201910163497.1, 授权号:2019030501223330.
[2]一种表面蛋白压印自供能生物燃料电池传感器的构建方法及其应用,邓留;欧阳江;韩雅静;刘又年. 申请日期:2016-10-31, 申请号:2016109272231, 授权日期:2018-10-31, 授权号:CN106525943B.
[3]一种光致变色分子及其制备方法和应用,刘又年;唐飞鹰;刘颖;王立强;侯佳楠;邓留. 申请日期:2016-02-24, 申请号:201610101191X, 授权日期:2018-03-09, 授权号:CN105541784B.
[4]硫醇锑类热稳定剂及其合成新工艺,舒万艮; ?瞿龙;?黄可龙;?刘又年;?古映莹. 申请日期:1993-09-06, 申请号:931116805, 授权日期:1998-01-07, 授权号:CN1036921C.
[5]一种包封多酚类活性物质的纳米粒子及其制备方法,李娟; ?刘又年;?张丽丽;?孙晓毅;?周辉辉;?林庆斌. 申请日期:2012-10-03, 申请号:2012103755998, 授权日期:2015-01-21, 授权号:CN102924929B.
[6]一种两亲性羧甲基葡聚糖修饰的磁性脂质体及其制备和应用方法,李娟; ?刘又年;?郭红艳;?孙晓毅;?曾科;?王建秀. 申请日期:2013-04-17, 申请号:2013101338171, 授权日期:2014-11-05, 授权号:CN103191060B.
[7]一种稳定的多糖修饰明胶纳米粒子及其制备方法和应用,李娟; ?刘又年;?周辉辉;?张佩;?林庆斌;?刘金凤;?周飞艨. 申请日期:2010-10-12, 申请号:2010105044243, 授权日期:2012-01-23, 授权号:CN102010513B.
[8]疏水改性葡聚糖修饰的长循环脂质体及其制备方法,李娟; ?刘又年;?宁顺花;?黄启瑜;?黄可龙;?张翼. 申请日期:2010-07-20, 申请号:2010102319367, 授权日期:2012-03-07, 授权号:CN101874781B.
[9]一种交联剂修饰XAD-4树脂及其制备方法,黄健涵; ?查宏伟;?杨丽;?邓曙光;?刘又年. 申请日期:2012-11-22, 申请号:2012104768251, 授权日期:2014-08-06, 授权号:CN102977487B.
[10]一种疏水/亲水性交联聚二乙烯苯/聚丙烯酰多乙烯多胺互贯聚合物网络及其制备方法,黄健涵; ?王小梅;?陈立妙;?梁晓磊;?查宏伟;?杨丽;?刘又年. 申请日期:2013-06-28, 申请号:201310267618X, 授权日期:2015-07-01, 授权号:CN103319662B.
[11]一种乙酰胺基修饰的超高交联型吸附树脂的制备方法及其应用,黄健涵; ?查宏伟;?杨丽;?李河冰;?伏振宇;?姚泽雷;?王小梅;?陈立妙;?刘又年. 申请日期:2014-04-25, 申请号:2014101716305, 授权日期:2015-11-18, 授权号:CN103908955B.
[12]一种检测氰根离子的分子探针及其合成和应用方法. 申请日期:2014-01-24, 申请号:2014100322594, 授权日期:2015-06-03, 授权号:CN103772280B.
[13]一种荧光分子探针化合物及其制备方法和应用. 申请日期:2014-07-13, 申请号:2014102634976, 授权日期:2015-12-09, 授权号:CN104059005B.
[14]一种用于ATP检测的方法及其配套的光学适配子传感器, 申请号:2014100687108, 授权日期:2016-01-20, 授权号:CN103822890B.
[15]制备极性修饰超高交联树脂的方法及应用,黄健涵; 伏振宇;?王云秋;?刘又年;?李河冰;?闫冲;?陈立妙. 申请日期:2015-06-24, 申请号:2015103519503
[16]基于AuNPs@AgNCs纳米复合材料的免疫电化学传感器及其构建与应用,邓留; ?韩雅静;?李理;?刘又年;?卢红梅. 申请日期:2014-08-28, 申请号:2014104305437, 授权日期:2016-03-02, 授权号:CN104267184B.
[17]一种细胞溶酶体定位用荧光染料及其制备方法和应用,刘又年; ?臧启光;?王立强;?邓留;?李娟. 申请日期:2015-01-12, 申请号:2015100132166
[18]一种以硫代巴比妥酸衍生物为探针分子检测仲胺的方法及其制备,刘又年; ?唐飞鹰;?臧启光;?邓留;?李娟. 申请日期:2015-01-12, 申请号:2015100131939
[19]基于海藻酸和短肽的互穿网络水凝胶及其制备方法,李娟; ?陈嘉慧;?刘又年;?孙晓毅. 申请日期:2015-10-30, 申请号:201510725704X
[20]一种利用蛋白作为模板制备形貌可控的α-Fe2O3介观晶体的方法,刘又年; ?王立强;?李向芝;?蒋星星. 申请日期:2015-09-15, 申请号:2015105825378
科研项目:
[1]国家自然科学基金委员会:基于蛋白-金属离子网络的碳基非贵金属催化剂的构筑 及其硝基加氢应用(重点项目:22238013),开始日期:2023-01-01,立项时间:2022-10-01
[2]国家自然科学基金委:基于MOF模板的多级孔纳米催化剂的制备及其对二氧化碳催化转化性能(21878342),刘又年,开始日期:2019-01-01,立项时间:2018-08-17,结项时间:2022-01-31.
[3]中南大学粉末冶金国家重点实验室:黑磷金属硫化物复合纳米片的制备及催化性能研究,刘又年,开始日期:2017-01-01,立项时间:2017-01-01,结项时间:2017-12-31.
[4]国家自然科学基金委:二氧化碳捕集与转化一体化纳米反应器的构建及其关键科学问题(21636010),刘又年,开始日期:2017-01-01,立项时间:2016-08-18,结项时间:2021-12-31.
[5]国家自然科学基金项目:体外刺激响应型多肽自组装药物载体的设计及控制释放行为(21476266),立项时间:2015-01-01
[6]国家自然科学基金项目:多肽自组装的设计及其对抗癌药物的控制释放研究(21276285),刘又年,开始日期:2013-01-01,立项时间:2012-09-01,结项时间:2016-12-31.
[7]广东顺德经济和科技促进局:纳米结构树脂基高分子材料的产业化,刘又年
[8]校企合作:烟气中重金属的形态分析,刘又年,立项时间:2014-09-01
[9]长沙市科技计划:食品中生物毒素快速检测技术的研究开发(K069059-12),刘又年,立项时间:2007-01-01
[10]国家自然科学基金委:新型抗肿瘤靶向药物二茂铁-多肽的合成及其抗癌活性研究(20676153),开始日期:2007-01-01,立项时间:2006-09-01,结项时间:2009-12-31.
[11]国家科技部:高靶向纳米脂质体的制备及抗肿瘤作用研究(2007 AA020810),刘又年,开始日期:2008-01-01,结项时间:2011-12-31.
[12] 国家自然科学基金委:阿尔茨海默病Aβ阻断肽-二茂铁-多肽的合成及其对Aβ聚集的抑制作用(20876179),刘又年,开始日期:2009-01-01,结项时间:2011-12-31.
[13]国家自然科学基金委:两亲性多肽的设计、合成及其对抗肿瘤纳米药物的修饰(23076232),刘又年,开始日期:2011-01-01,结项时间:2013-12-31.