研究方向
微納米機器人的構築及其在生物醫藥領域的套用研究、貴金屬納米材料的可控制備及其在生物醫藥領域的套用研究、高靈敏生物感測器的構建及其在重大疾病診斷套用
教育及工作經歷
2018.09-2024.01 武漢理工大學,材料複合新技術國家重點實驗室,副研究員
2016.07-2018.09 武漢理工大學,材料複合新技術國家重點實驗室,助理研究員
2010.09-2016.06 武漢大學,分析化學,理學博士
2013.09-2015.09 喬治亞理工學院(美國),材料化學,聯合培養
科研項目
1. 2021.01−2024.12,靶向腫瘤細胞線粒體的脲酶驅動納米金罐馬達的構築與套用研究,國家自然科學基金面上項目
2. 2022.11-2025.10,醫用微納機器人系統,國家重點研發計畫青年科學家項目
3. 2018.01−2020.12,量子點微米馬達生物感測器的設計、製備與感測性能,國家自然科學基金青年項目
4. 2019.01-2020.12,脲酶驅動罐狀微納米發動機的製備及性能研究,湖北省自然科學基金 面上項目
5. 2017.01−2018.12,自驅動微米馬達的製備及其生物套用,材料複合新技術國家重點實驗室自主研究項目
發明專利
1.羅明;馮有增;官建國;一種脲酶驅動罐狀微納米馬達及其製備方法,2022-07-08, 中國,ZL201910401501.3(授權)
2.羅明;李守麗;官建國;一種提高酶驅動微納米馬達驅動力的方法,2019.11.13,中國,ZL201911106446.1(授權)
3.羅明;李佳欣;翟翔祥;官建國;一種小尺寸氣泡驅動微納米馬達及其製備方法,2022.11.09,中國, 202211163033.9
4.羅明;王良夢;楊自立;高志雪;官建國;一種酶驅動雙面神納米馬達及其製備方法,2021.07.08,中國, 202110771323.0
5.羅明;楊自立;王良夢;官建國;一種趨磁納米馬達及其製備方法,2021.09.26,中國,202111128855.9
主要成就
已經在Chem. Soc. Rev., J. Am. Chem. Soc.,Nat. Commun., ACS Nano, Adv. Funct. Mater., Nano Lett., Appl. Phys. Rev.和Biosens. Bioelectron.等國際著名學術期刊上發表SCI收錄論文60餘篇。代表性論文如下:
1. Yang, Z.;#Wang, L.;#Gao Z.; Hao, X.; Luo, M.;* Yu, Z.;* Guan, J.* Ultrasmall Enzyme-Powered Janus Nanomotor Working in Blood Circulation System. ACS Nano,2023,17,6023–6035.
2. Li, J.; Zhai, X.; Yang, Z.; Pei, Z.; Luo, M.;* Guan, J.* Bubble-Propelled Micro-/Nanomotors of Variable Size by Regulating Surface Microstructure of Partial Coating Shell Pt. Journal of Materials Chemistry C, 2023,11, 7059–7067.
3. Wang, L.;#Hao, X.;#Gao, Z.;#Yang, Z.;#Long, Y.; Luo, M.;* Guan, J.* Artificial Nanomotors: Fabrication, Locomotion Characterization, Motion Manipulation, and Biomedical Applications.Interdisciplinary Materials,2022,1, 256−280.
4. Feng, Y.; Yuan, Y.; Wang, J.; Yang, C.; Hao, X.; Gao, Z.; Luo, M.;* Guan, J.* Adaptive Enzyme-Powered Micromotors with Switchable Propulsion Mechanism and Motion Direction. Applied Physics Reviews,2021,8, 011406.
5.Luo, M.;#Feng, Y.;#Wang, T.; Guan, J.* Micro-/Nanorobots at Work in Active Drug Delivery. Advanced Functional Materials,2018,28, 1706100.
6.Luo, M.; Ruditskiy, A.; Peng, H.-C.; Tao, J.; Figueroa-Cosme, L.; He, Z.; Xia, Y.*Penta-twinned Nanorods of Cu: Facile Synthesis viaSeed-mediated Growth and Their Tunable Plasmonic Properties. Advanced Functional Materials, 2016, 26, 1209−1216.
7.Luo, M.; Huang, H.; Choi, S.-I.; Zhang, C.; da Silva, R. R., Peng, H.-C.; Li, Z.-Y.; Liu, J.; He, Z.; Xia, Y.*Facile Synthesis of Ag Nanorods with No Plasmon Resonance Peak in the Visible Region by Using Pd Decahedra of 16 nm in Size as Seeds. ACS Nano, 2015, 9, 10523−10532.
8.Luo, M.; Li, N.; Liu, Y.; Chen, C.; Xiang, X.; Ji, X.; He, Z.* Highly Sensitive and Multiple DNA Biosensor Based on Isothermal Strand-Displacement Polymerase Reaction and Functionalized Magnetic Microparticles. Biosensors & Bioelectronics, 2014, 55, 318–323.
9.Luo, M.; Chen, X.; Zhou, G.; Xiang, X.; Chen, L.; Ji, X.; He, Z.* Chemiluminescence Biosensors for DNA Detection Using Graphene Oxide and a Horseradish Peroxidase-Mimicking DNAzyme. Chemical Communications, 2012, 48, 1126–1128.
10.Luo, M.; Xiang, X.; Xiang, D.; Yang, S.; Ji, X.; He, Z.* A Universal Platform for Amplified Multiplexed DNA Detection Based on Exonuclease III-Coded Magnetic Microparticle Probes. Chemical Communications,2012, 48, 7416–7418.
11.Luo, M.;#Li, S.;#Wan, J.; Yang, C.; Chen, B.; Guan, J.*Enhanced Propulsion of Urease-Powered Micromotors by Multilayered Assembly of Ureases on Janus Magnetic Microparticles. Langmuir, 2020, 36, 7005−7013.
12.Luo, M.;#Jiang, Y.;#Su, J.; Deng, Z.; Mou, F.; Xu, L.; Guan, J.*Surface Charge-Reversible Tubular Micromotors for Extraction of Nucleic Acids in Microsystems. Chemistry An Asian Journal, 2019, 14, 2503−2511.