通信工程系
通信工程系
胡世会(讲师)
2024-09-26 09:25      审核人:




基本情况:

姓名: 胡世会

电子邮箱:hushihui@email.tjut.edu.cn

学历学位:博士研究生

职称:讲师

研究专长方向:智能传感器;电子电路系统设计



项目:

1. 博士后项目,基于振动信号的传感系统研发与应用,主持,经费数额:210万

2. 国家重点研发计划,城市轨道交通运营重大风险防控关键技术装备研发及示范应用,2022YFC3005201,参与。

3. 国家自然科学基金面上项目,基于碳点石墨烯衍生物增强型光寻址电位传感器的甲基化芯片及其检测系统的研究,61771260,参与。


论文:

1、Hu S, Wang Z, Gu Y, et al. Clinical available circulating tumor cell assay based on tetra(4-aminophenyl) porphyrin mediated reduced graphene oxide field effect transistor[J]. Electrochimica Acta, 2019, 313. (一作, SCI二区,Top)

2、Hu S, Jia Y. Function of Tetra (4-Aminophenyl) Porphyrin in Altering the Electronic Performances of Reduced Graphene Oxide-Based Field Effect Transistor[J]. Molecules, 2019, 24(21):3960. (一作,SCI三区)

3、Hu S, Zhang R, Jia Y. Porous Graphene Oxide Decorated Ion Selective Electrode for Observing Across Cytomembrane Ion Transport[J]. Sensors, 2020, 20(12):3500. (一作,SCI三区)

4、Hu S, Jia Y. DNA hydrogel to improve solution-gate graphene field effect transistor in all-solid-state[J]. Journal of Instrumentation, 2021, 16(12), P12034. (一作,SCI四区)

5、Hu S, Zhang J, Wang Z, Jia Y. A Comprehensive Study on the Theory of Graphene Solution-Gated Field Effect Transistor: Simulations and Experiments[J]. Chinese Journal of Electronics, 2022, 31(4), 652-657. (一作,SCI四区)

6、Wang Z, Hu S, Li F, et al. Study of porphyrin-modified liquid exfoliated graphene field-effect transistors for evaluating DNA methylation degree[J]. Analyst, 2019, 144.

7、Li F, Hu S, Zhang R, et al. Porous Graphene Oxide Enhanced Aptamer Specific Circulating-Tumor-Cell Sensing Interface on Light Addressable Potentiometric Sensor: Clinical Application and Simulation[J]. ACS Applied Materials & Interfaces, 2019, 9(11).

8、Vibration simulation and analysis of high-speed railways sound barriers under different conditions of bolts loosening, Journal of Physics: Coference Series (ISSN: 1742-6596). (EI检索,已录用)


专利:

1、《基于 LoRa 标准通用数字量采集仪的服务器端口监听软件V1.0》 登记号:2023SR0975528

2、《一体化无线振动监测系统》申请号:2023221849037(已授权)

3、《精测精捣作业过程中铁路动态TQI智能预测方法》申请号:2023113365525(已授权)

4、《一种高速铁路直立式声屏障服役状态监测方法》申请号:2023113365525(已受理)