学院概况

学院概况

机械工程

王天然

时间:2025-04-19作者:综合科来源:【机器人工程学院】

王天然.png


教育工作经历:

2023年11月至今   温州理工学院智能制造与电子工程学院

2023.06~2023.08 西湖大学       访问人员

2018.09~2023.06 国防科技大学   机械工程        博士

2015.09~2018.06 中南大学    材料科学与工程     硕士

2010.09~2014.06 中南大学    材料科学与工程     学士


代表项目:

参与基础加强计划重点基础研究项目一项、装备预研项目一项等。


代表论文

(1) 第一作者. Wang T, Dong P, et al. Trace detection of anthrax protective antigens via a competitive method based on surface-enhanced Raman scattering[J]. Sensors and Actuators B: Chemical, 2021, 346: 130467. (IF 9.221, JCR Q1)

(2) 第一作者. Wang T, Dong P, et al. Fabrication of 2D titanium carbide MXene/Au nanorods as a nanosensor platform for sensitive SERS detection, CERAMICS INTERNATIONAL. 2021, 47: 30082-30090. (IF 5.532, JCR Q1)

(3) 共同一作. Gao W*, Wang T*, Zhu C, et al. A ‘sandwich’structure for highly sensitive detection of TNT based on surface-enhanced Raman scattering[J]. Talanta, 2022, 236: 122824. (IF 6.556, JCR Q1)

(4) 第一作者. Wang T, Gao W, et al. Au Nanoparticle/Graphene Oxide Composites Deposited on Au Nanorod Arrays as Substrates for Surface-Enhanced Raman Scattering Sensing[J]. ACS Applied Nano Materials, 2022. 5 (1): 1086-1094 (IF 6.14 JCR Q2).

(5) 共同一作. Yang J*, Wang T*, et al. The novel sandwich composite structure: a new detection strategy for the ultra-sensitive detection of cyclotrimethylenetrinitramineRDX, Nanotechnology, 2022, 33(35): 355707 (IF 3.953 JCR Q2).

(6) 共同一作.Yang J*, Wang T*, et al. Yang J, Wang T, Gao W, et al. Surface Acoustic Wave Devices Based on Graphene Oxide/Au Nanorod Composites for Gas-Phase Detection of 2, 4, 6-Trinitrotoluene[J]. ACS Applied Nano Materials, 2022, 5(9): 12540-12551. (IF 6.14 JCR Q2).

(7) 第一作者. Wang T, Li Y, Qi W. Matrix effect on order-disorder phase transition of FePt nanoparticles[J]. Physica B: Condensed Matter, 2018, 545: 498-502. (IF 2.988 JCR Q3).

(8) 第一作者. Wang T, Qi W, Tang K, et al. Size dependent structural stability of Mo, Ru, Y and Sc nanoparticles[J]. Journal of Physics and Chemistry of Solids, 2017, 108: 1-8. (IF 4.383 JCR Q2).

(9) 共同一作. Tang K*, Wang T*, Qi W, et al. Debye temperature for binary alloys and its relationship with cohesive energy[J]. Physica B Condensed Matter, 2017, 531:95-101. (IF 2.988 JCR Q3).

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