| 姓名 |
王子然 |
性别 |
男 |
|
| 出生年月 |
|
行政职务 |
|
| 学历 |
博士研究生 |
学位 |
博士 |
| 专业技术职务及任导师情况 |
研究员,博士研究生导师 |
| 所在一级学科名称 |
机械工程 |
| 所在二级学科名称 |
机械电子工程 |
|
学术兼职
山东大学齐鲁青年学者
长期担任Sensors,Biomedical Microdevices等期刊审稿人
国内外学习和工作经历
本科:济南大学,机械工程
博士:哈尔滨工业大学,直博,机械电子工程
联合培养博士:哥伦比亚大学 机械工程系
博士后:香港理工大学
2021至今:山东大学机械工程学院,研究员,博士生导师
研究领域
1.微纳传感器制备、测试技术
2.面向各类疾病标志物(小分子、蛋白、外泌体、气体等)快速检测的二维材料晶体管与电化学生物传感器及其智能检测设备研究
3.超声传感器及其便携式检测设备研究
4.应力应变传感器与机器人电子皮肤
5.基于传感器检测信号的分类、诊断和预测AI模型研究
学术身份
中国仪器仪表学会青年科技人才培育计划(原中国科协青年托举计划)
山东省泰山学者青年专家
山东大学齐鲁青年学者
研究生/本科生获奖情况
1.指导本科生独立一作发表中科院一区TOP论文(2025)
2.博士生获中国科协青年科技人才培育工程博士生专项(2025)
3.博士生获“蒋庄德院士传感器奖学金”提名奖(全国仅10人,2026)
4.全国大学生创新大赛山东省金奖(2024)及其他省级奖项若干
5.中国大学生机械工程创新创意大赛:第七届明石杯微纳传感技术与智能应用赛:国赛二等奖(2026)
6.研究生获得国家奖学金以及各类企业奖学金多项
承担代表性科研项目情况
1.2026-2029 国家自然科学基金区域创新发展联合基金重点项目,课题负责人
2.2025-2028 山东省重点研发计划,项目负责人
3.2024-2026 国家自然科学基金,项目负责人
4.2023-2025 山东省泰山学者计划,项目负责人
5.2024-2026 山东省自然科学基金,项目负责人
6.2024-2026 江苏省自然科学基金,项目负责人
7.2023-2028 山东大学齐鲁青年学者启动基金,项目负责人
8.2023-2025 国家实验室开放基金,项目负责人
以及其他国防及横向项目十余项
招生
欢迎有机械、材料、计算机、物理、微电子等相关背景学生报考!欢迎本科同学加入课题组学习!优秀学生可推荐至美国哥伦比亚大学、香港理工大学等国际知名高校交流、深造。
常年招聘相关方向博士后,待遇参照山东大学和山东省博士后政策及相关补贴。
近期主要的代表性论文等
·Chaqi Gai, Ziran Wang*, Fu Shang, et al. A permeable and stretchable liquid metal fiber enables ultrahigh linearity and wide-range strain sensors [J]. Advanced Composites and Hybrid Materials, 2026, 9, 374. (IF 15.5)
·Lulu Guo a*, Weifeng Zhang, ...Ziran Wang*, Fan Yang*, Guoqiang Li*, Jinpeng Sun*, Development of itch biosensors with engineering membranereceptors that are coupled to field-effect transistors [J]. Biosensors and Bioelectronics, 2026, 312, 119064.
·Shuai Chen, Yang Song, Chen Wang, Ziran Wang*, A universal and robust framework for multiple gas recognition based-on spherical normalization-coupled Mahalanobis algorithm [J]. Sensors and Actuators: A. Physical, 2026, 405, 117857.
·Yang Chen, Peng Yan* , Ziran Wang*, An enhanced-decoupling parallel piezoelectric inchworm actuator based on spatial orthogonal bridge-type mechanism [J]. Sensors and Actuators: B. Chemical, 2026, 467, 140444.
·Zhang L., Wang Ziran*, et al. A Multiplexed and In Situ Self-Calibration Biosensor Integrated System for Metabolic Health Analysis in Human Urine [J]. Advanced Functional Materials, 2025, e20270.
·Yuan H., Wang Ziran*, Yuan K., et al. Ferroelectric-coupled MXene/BaTiO3 nanocomposite empowering flexible triboelectric nanogenerators for deep learning-enhanced human-machine health monitoring [J]. Chemical Engineering Journal, 2025: 163758.
·Wang C., Wang Ziran*, Xu F., et al. Monolayer graphene interlayer enhanced flexible gas sensor with fast response and high strain tolerance for wearable ammonia monitoring [J]. Chemical Engineering Journal, 2025: 165630.
·Xin Hou, Jian Yang, Yang Zhang, Peng Yan*, Ziran Wang*. Selective laser melting of TiC microparticles strengthened 316 L composites for flexible mechanisms with enhanced mechanical properties [J]. Materials Today Communications, 2025: 48, 113527.
·Qi Wang, Dahoon Ahn, Yang Zhang, Peng Yan*, Ziran Wang*. A high performance hybrid-driven piezoelectric actuator based on asymmetrical
structure with combined lateral and coupling motions [J]. Precision Engineering, 2025: 97, 1049-1059.
·Ziran Wang*, Wenting Dai, Zaiyu Zhang and Haipeng Wang. Aptamer-Based Graphene Field-Effect Transistor Biosensor for Cytokine Detection in Undiluted Physiological Media for Cervical Carcinoma Diagnosis [J]. biosensors, 2025: 15, 138.
·Zhang Z., Zhang L., Wang Ziran*, et al. A Planar-Gate Graphene Field-Effect Transistor Integrated Portable Platform for Rapid Detection of Colon Cancer-Derived Exosomes [J]. Biosensors, 2025, 15(4): 207.
·Fang J., Ren Z.*, .....Wang Ziran*, et al. 3-D helical reconfiguration of a 1-D guidewire with spiral microchannels for clotretrieval from cerebral blood vessels [J]. Microsystem Technologies, 2025, 10: 1503.
·Hao Z.1, Fang X.1 , Wang Ziran1, et al. Intelligent Wearable Graphene Nano-electronics with Switchable Surface Wettability Capabilities for Autonomous Sweat Enrichment-Purification-Analysis [J]. Advanced Functional Materials, 2024, 34(41): 2400947.
·Wang Ziran, Hao Z., Yang C., et al. Ultra-sensitive and rapid screening of acute myocardial infarction using 3D-affinity graphene biosensor [J]. Cell reports physical science, 2022, 3(5).
·Wang Ziran, Hao Z., Wang X., et al. A flexible and regenerative aptameric graphene–nafion biosensor for cytokine storm biomarker monitoring in undiluted biofluids toward wearable applications [J]. Advanced Functional Materials, 2021, 31(4): 2005958.
·Wang Ziran, Hao Z., Yu S., et al. An ultraflexible and stretchable aptameric graphene nanosensor for biomarker detection and monitoring [J]. Advanced Functional Materials, 2019, 29(44): 1905202.
·Wang Ziran, Dai W., Yu S., et al. Towards detection of biomarkers in the eye using an aptamer-based graphene affinity nanobiosensor [J]. Talanta, 2022, 250: 123697.
·Wang Ziran, Hao Z., Yu S., et al. A wearable and deformable graphene-based affinity nanosensor for monitoring of cytokines in biofluids [J]. Nanomaterials, 2020, 10(8): 1503.
·Wang C., Xu F., Wang Ziran*, et al. A Fast-Response and Sensitive Gas Sensor Based on Graphene-Tin Dioxide Film for Ammonia Detection at Ambient Temperature; 2024 IEEE 3M-NANO, F, 2024 [C].
·Chen Y., Wang Ziran*, et al. An Orthogonal and Stereoscopic Amplifying Mechanism with Nonparasitic Displacement for Parallel Piezoelectric Inchworm Actuators; 2024 20th IEEE/ASME F, 2024 [C].
·Zhang J., Yang J., Wang Ziran*, et al. Design and Analysis of a Monolithic Tilt/Tip Platform Based on Anti-Symmetric Flexible Structure; 2024 IEEE 3M-NANO, F, 2024 [C].
·Wang Ziran, Hao Z., Zhao X., et al. A Mechanically Flexible Aptamer-Based Graphene Nanosensor for Biomark Monitoring[C]. 2019 IEEE MEMS. pp. 2428-2431. (EI)
·Ma X., Wang Ziran, Yan P.. Programmable Metamaterials with Perforated Shell GroupSupporting Versatile Information Processing [J]. Advanced Science, 2025, 2417784.
联系方式
地址:山东省济南市经十路17923号山东大学千佛山校区机械电子工程研究所
邮编:250061
邮箱:wangziran @sdu.edu.cn;