刘波
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基本情况
刘波,男,工学博士,助理研究员,硕导。
联系方式
邮箱:liu_bo@sdu.edu.cn
研究方向
微流控技术及应用:微流控检测芯片、微纳传感器、高效微混合器/反应器、微流控器件、可穿戴汗液传感器;
发电系统及其关键设备失效分析。
教育经历
2019.09~2023.06,哈尔滨工业大学,微米与纳米流体力学研究中心,力学,博士
2012.09~2015.06,重庆大学,机械传动国家重点实验室,机械设计及理论,硕士
2008.09~2015.06,山东理工大学,机械设计制造及其自动化,学士
工作经历
2023.08~至今,山东大学,核科学与能源动力学院,助理研究员/硕导
2015.07~2019.08,中广核研究院有限公司,研发工程师
专著/标准
刘波等,T/CITS 534-2025《基于MEMS的电化学生物传感器技术要求》
Liu Bo et al. 《Development of Miniaturized Electrochemical Sensors》. Sydney: Bio-Byword Scientific Publishing, 2021.
学术论文
Bo Liu*, et al. Investigation of cavitation-induced failure mechanisms in charging flow control valves for nuclear power plants. Engineering Failure Analysis, 2026, 186: 1350-6307. (JCR-Q1, IF=5.7, Top)
Boyuan Xu, et al. Biomimetic Diode Solar Evaporator Enabling Efficient Transport-Kinetics-Dominated Evaporation and Localized Salt Crystallization. ACS Applied Materials & Interfaces, 2026, 18: 25371-25381. (JCR-Q1, IF=8.2, Top)
Jiaqian Li et al. Strengthening heat transfer of micro heat pipes using biomimetic liquid diode structures. International Journal of Heat and Mass Transfer, 2026, 256: 128186. (JCR-Q1, IF=5.8, Top)
Zhongwei Liang et al. Quantification of nitrite in beverages and pickled foods with a high-sensitivity amperometric biosensor enhanced by a multilayer perceptron neural network. Analytical Methods, 2026, 18: 2109-2121. (JCR-Q1, IF=2.7)
Teng Shen, et al. AI-Assisted Microfluidic Paper-Based Analytical Device with Au-Pt Nanoparticles for Multiplex, Interference-Resistant Quantification of Urinary Biomarkers. Analytical Chemistry, 2025, 97: 27394-27406. (JCR-Q1, IF=6.7, Top)
Qinlin Chen, et al. Quantitative Study on Fast Kinetics of Hydrodynamic Liquid Absorption of CO2 Microbubbles Enabled by Microfluidic Visualization and Computational Fluid Dynamics Method. Analytical Chemistry, 2025, 97: 24984-24994. (JCR-Q1, IF=6.7, Top)
Bo Liu*, et al. Portable, facile microfluidic platform using a low-cost vacuum pump for multiplex biomarker detection in human samples. Sensors and Actuators B:Chemical, 2025, 426: 136994. (JCR-Q1, IF=8, Top)
Bin Ran, et al. Acoustic micromixing in a serpentine channel with sharp teeth for controllable nanomaterial synthesis. Chemical Engineering Journal, 2025, 504(15): 159094. (JCR-Q1, IF=13.4, Top)
Chaozhan Chen, et al. Development of an origami microfluidic paper-based analytical device for highly sensitive detection of dual biomarkers in artificial saliva. Microchemical Journal, 2025, 210: 112966. (JCR-Q1, IF=5.1)
Chaozhan Chen, et al. A microfluidic paper-based analytical device based on a surface-modified screen-printed electrode Pt-Pd/RGO nanocomposite for glucose detection in urine. Analytical Method, 2025, 17(31): 6326-6335. (JCR-Q2, IF=2.6)
Zhongwei Liang, et al. N-doped mesoporous carbon spheres/Pt–Pd nanocomposite-based amperometric biosensors for sensitive hydrogen peroxide and glucose detection in beverages and fruit juices. Analytical Method, 2025, 17(32): 6496-6505. (JCR-Q2, IF=2.6)
Bo Liu, et al. Continuous production of bimetallic nanoparticles on carbon nanotubes based on 3D-printed microfluidics. Nanoscale, 2024, 16(5): 2565-2573. (JCR-Q1, IF=6.7)
Jing Jin, et al. Fabrication of stable monolayer liquid marbles with reduced particle coverage and locomotion on hydrophilic surface. Communications Materials, 2024, 5: 64. (JCR=Q1, IF=7.8)
Bo Liu, et al. Numerical Investigation of Flow Patterns and Mixing Characteristics in a 3D Micromixer with Helical Elements over Wide Reynolds Numbers. Advanced Theory and Simulations, 2023, 6(5): 2200671. (JCR-Q2, IF=3.3, 期刊封面文章)
Chaozhan Chen, et al. Development of a novel microfluidic biosensing platform integrating micropillar array electrode and acoustic microstreaming techniques. Biosensors & Bioelectronics, 2023, 223: 114703. (JCR-Q1, IF=12.6, Top)
Chaozhan Chen, et al. Multiplexed detection of biomarkers using a microfluidic chip integrated with mass-producible micropillar array electrodes. Analytica Chimica Acta, 2023, 1272: 341450. (JCR-Q1, Top, IF=6.2)
Peiran Li, et al. Topology optimization design of a passive two-dimensional micromixer. Chemical Physics Letters, 2023, 821: 140445. (JCR-Q2, IF=2.8)
Bo Liu, et al. High-Throughput Microfluidic Production of Bimetallic Nanoparticles on MXene Nanosheets and Application in Hydrogen Peroxide Detection. ACS Applied Materials & Interfaces, 2022, 14(50): 56298-56309. (JCR-Q1, IF=9.5, Top, 期刊封面文章)
Bo Liu, et al. A Low-cost and High-performance 3D Micromixer over a Wide Working Range and its Application for High-sensitivity Biomarker Detection. Reaction Chemistry & Engineering, 2022, 7(11): 2334-2347. (JCR-Q2, IF=3.9)
Bin Ran, et al. A Ti3C2Tx/Pt-Pd based amperometric biosensor for sensitive biomarker detection. Electrophoresis, 2022, 43(20): 2033-2043. (JCR-Q2, IF=2.9, 期刊封面文章)
Chaozhan Chen, Bin Ran, Bo Liu, Xiaoxuan Liu, Jing Jin*, Yonggang Zhu*. Numerical study on a bio-inspired micropillar array electrode in a microfluidic device. Biosensors, 2022, 12(10): 1-16. (JCR-Q1, IF=5.4)
Bo Liu*, et al. Economic Study of a Large-scale Renewable Hydrogen Application Utilizing Surplus Renewable Energy and Natural Gas Pipeline Transportation in China. International Journal of Hydrogen Energy, 2020, 45(3): 1385-1398. (JCR-Q1, IF=7.2, Top, 高被引文章, ESI, 2021)
Hanghang Ding, Xiangtao Zhong, Bo Liu, Liuyong Shi*, Teng Zhou*, Yonggang Zhu. Mixing mechanism of a straight channel micromixer based on light-actuated oscillating electroosmosis in low-frequency sinusoidal AC electric field. Microfluidics and Nanofluidics, 2021, 25(3): 1-15. (JCR-Q2, IF=2.8)
Bo Liu, et al. Electrochemical Performance of Micropillar Array Electrodes in Microflows. Micromachines, 2020, 11(9): 1-14. (JCR-Q2, IF=3.4)
Bo Liu*, et al. Numerical Analysis of Cavitation Erosion and Particle Erosion in Butterfly Valve. Engineering Failure Analysis, 2017, 80: 312-324. (JCR-Q1, IF=4)
发明专利
申请发明专利16项(PCT国际专利1项),已授权9项。
三维可视化微流控实验系统及相界面重构方法,2024.04.12,CN202410134083.7.
一种通用多生物联合检测微流控装置及检测方法,2023.08.23,CN202310726671.5.
一种负载纳米金属颗粒的碳纳米管纳米复合材料连续可控合成方法及微流控合成平台,2023.07.05(已授权),CN116672984A.
一种用于电化学检测的微流控芯片及其制备方法与应用,2022.10.21,CN115212935A.
一种微流控芯片及其制备方法与应用,2022.10.14,CN202210688730.X.
图案化电极及其制备方法和应用,2022.08.12(已授权),ZL202011622339.7.
MANUFACTURING METHOD FOR 3D MICROELECTRODE,2022.07.07(PCT国际专利),WO2022142511A1(US/EU).
一种具有氢能循环利用的并网型微电网系统及其控制方法,2022.07.26(已授权),ZL201811356729.7.
一种具有可移动氢能应急电源的微电网系统,2022.05.31(已授权),ZL201811356623.7.
一种离网型交直流混合微电网系统及其控制方法,2021.09.24(已授权),ZL201811363242.1.
集散耦合式应急电源系统及集散耦合式应急电源站,2021.05.14(已授权),ZL201811573524.4.
一种分布式冷热电联供系统,2020.12.01(已授权),ZL202020531387.4.
热管与地热采集装置,2020.11.20,CN202010833209.1.
一种能源综合利用系统及其设计方法,2019.03.01,CN201811285731.X.
一种孔用机械紧口装置,2017.08.29(已授权),ZL201610146167.8.
一种具有不完全齿轮机构的往复式齿轮箱,2015.11.18(已授权),ZL201310533420.1.
学术会议
邀请报告, 第七届微流控技术应用创新论坛, 2024.12, 中国, 深圳.
口头报告, 第十四届全国分析化学年会, 2023.11, 中国, 深圳.
口头报告, 26th International Conference on Miniaturized Systems for Chemistry and Life Sciences (μTAS2022), 2022.10, China, Hangzhou.
口头报告, 3rd International Conference of Microfluidics, Nanofluidics and Lab-on-a-Chip (ICMFLOC2021), 2021.07, China, Shenzhen.
口头报告, 22nd Australasian Fluid Mechanics Conference (AFMC2020), 2020.12, Australia, Brisbane.
口头报告, 2nd International Conference on Design, Materials, and Manufacturing (CDMM2017), 2017.12, China, Beijing.
项目经历
2025~2027,山东省自然科学基金(面上项目),主持;
2023~2026,山东大学基本科研业务费资助项目,主持;
2025~2027,山东省自然科学基金(面上项目),核心成员;
2020~2023,深圳市基础研究(重点项目),核心成员;
2018~2021,深圳市基础研究(学科布局),核心成员;
2022~2024,海南省重点研发计划,参与;
2022~2024,广东省自然科学基金,核心成员;
2022~2024,深圳市稳定支持计划,参与;
2019~2022,国家重点研发计划,参与;
2018~2020,国家能源局/中广核核电运营,子系统负责人;
2018~2022,深圳市科技计划,核心成员;
2021~2022,深圳市第三人民医院-横向项目,核心成员;
2018~2019,中广核集团/预研项目-横向项目,子系统负责人;
2017~2019,中广核研究院/青峰计划-横向项目,主持;
2016~2017,大亚湾核电/辽宁红沿河核电-横向项目,主持;
2016~2017,华能山东石岛湾核电-横向项目,子系统负责人;
2015~2017,中广核集团-横向项目,子系统负责人;
2015~2016,大亚湾核电运营管理有限责任公司-横向项目,子系统负责人。
学术兼职
期刊客座编辑:《Micromachines》、《Fluids》;
期刊审稿人:《Biosensors & Bioelectronics》、《Sensors and Actuators B:Chemical》、《Chemical Engineering Journal》、《Sensors》、《International Journal of Hydrogen Energy》、《Engineering Failure Analysis》、《Nuclear Engineering and Design》等;
深圳市“海上能源智慧运维工程技术中心”,专家委员会委员;山东科创集团,技术专家。
荣誉与奖励
2024年国际空间科学与载荷大赛(2024 International Space Science and Scientific Payload Competition), 铜奖,指导老师。