学术论文: 近年来,以第一作者或者通讯作者在《Nanophotonics》(Top期刊,IF: 8.449)、《Nanoscale》(Top期刊,IF: 7.790)、《Frontiers of Mechanical Engineering》(Top期刊,IF: 4.063)、《Optics and Lasers in Engineering》(IF: 5.666)和《Optics Express》(Top期刊,IF: 3.894)等国际重要期刊上发表SCI论文10余篇,具体情况如下: [1] Zhang Z‡, Huang Y‡, Zhong S, et al. Time of flight improved thermally grown oxide thickness measurement with terahertz spectroscopy. Frontiers of Mechanical Engineering, 2022, 17(4): 49. (SCI 收录,IF: 4.063, JCR Q1区,中科院1区) [2] Lin T, Huang Y*, Zhong S, et al. Field manipulation of electromagnetically induced transparency analogue in terahertz metamaterials for enhancing liquid sensing. Optics and Lasers in Engineering, 2022, 157: 107127. (SCI 收录,IF: 5.666, JCR Q1区,中科院2区) [3] Zeng Q, Huang Y*, Zhong S, et al. Multiple Resonances Induced Terahertz Broadband Filtering in a Bilayer Metamaterial. Frontiers in Physics, 2022, 10: 857422. (SCI 收录,IF: 3.560) [4] Huang Y, Zhong S, et al. Editorial: Terahertz Sensing and Diagnosis. Frontiers in Physics, 2021, 9: 754840. (SCI 收录,IF: 3.560) [5] Zhang H, Zhang P, Zhao J, Liu Y, Huang Y, et al. Hole-Tunneling Heterojunction of Hematite-Based Photoanodes Accelerates Photosynthetic Reaction. Angewandte Chemie., 2021. (SCI 收录,IF: 16.823, JCR Q1区,中科院1区) [6] Zhong Y‡, Huang Y‡, Zhong S, et al. Tunable Terahertz Broadband Absorber Based on MoS2 Ring-Cross Array Structure, Optical Materials, 2021, 114: 1-8. (SCI 收录) [7] Lin T‡, Huang Y‡, Zhong S, et al. Sensing enhancement of electromagnetically induced transparency effect in terahertz metamaterial by substrate etching. Frontiers in Physics, 2021, 9: 664864. (SCI 收录, IF: 3.560) [8] Huang Y, Zhong S, et al. Terahertz Plasmonic Phase-Jump Manipulator for Liquid Sensing. Nanophotonics, 2020, 9(9): 3011-3021. (SCI 收录,IF: 8.449, JCR Q1区,中科院1区) [9] Huang Y, Zhong S, et al. HR-Si prism coupled tightly confined spoof surface plasmon polaritons mode for terahertz sensing. Optics Express, 2019, 27(23): 34067-34078. (SCI 收录,IF: 3.894, JCR Q1区,中科院2区) [10] Huang Y, Zhong S, et al. Trapping waves with tunable prism-coupling terahertz metasurfaces absorber. Optics Express, 2019, 27(18): 25647-25655. (SCI 收录,IF: 3.894, JCR Q1区,中科院2区) [11] Huang Y, Zhong S, et al. Terahertz phase jumps for ultra-sensitive graphene plasmon sensing. Nanoscale, 2018, 10(47): 22466-22473. (SCI 收录,IF: 7.790, JCR Q1区,中科院1区) [12] Huang Y, Zhong S, et al. GrapheneInsulator Stack Based Ultrasensitive Terahertz Sensor With Surface Plasmon Resonance. IEEE Photonics Journal, 2017, 9(6): 1-11. (SCI 收录,IF: 2.443) [13] Huang Y, Zhong S, et al. Tunable terahertz plasmonic sensor based on GrapheneInsulator stacks. IEEE Photonics Journal, 2017, 9(1): 1-10. (SCI 收录,IF: 2.443) [14] Huang Y, Zhong S, et al. Tunable ultrasensitive terahertz sensing based on surface plasmon polariton of doped monolayer graphene, Physica Status Solidi A, 2017, 214(1):1-6. (SCI 收录,IF: 1.981) [15] Yao H, Zhong S, Huang Y, et al. Handedness-Switchable Optical Chirality in One-Dimensional Periodic Plasmonic-Grooves for Circular Dichroism and Simultaneous Refractive Index Sensing. IEEE Photonics Journal, 2017, 9(3): 1-10. (SCI 收录,IF: 2.443) [16] Zhang P, Zhong S, Zhang J, Ding J, Liu Z, Huang Y, et al. Application of Terahertz Spectroscopy and Imaging in the Diagnosis of Prostate Cancer. Current optics and photonics. 2020, 4(1):31-43. (SCI 收录,IF: 0.879) [17] Huang Y, Zhong S. Tunable Terahertz Plasmonics Sensor Using Doped Graphene. UCMMT 2017, 2017: 8068489. (会议论文,EI 收录) [18] Huang Y, Zhong S. FEM Study of Graphene Based Tunable Terahertz Plasmonics Gaseous Sensor. Advanced Mechanical Science and Technology for the Industrial Revolution 4.0, 2018. (会议论文) [19] 黄异,张政浩,钟宇杰,等. 太赫兹等离子体激元增强传感研究进展[J]. 学院(自然科学版),2021, 49(5):655-665. [20] 黄异, 钟舜聪. 基于石墨烯的可调太赫兹等离子传感器有限元研究[J]. 中国科技在线,2017. 专利: [1] 太赫兹表面等离子体共振传感装置及使用方法,申请号:1911696.1 (国际专利,授权) 基于太赫兹相位突变的石墨烯等离子体传感装置及工作方法,申请号:201810603025.9 (发明,公布) [2] 一种基于高阻硅的太赫兹衰减全反射检测装置及其使用方法,申请号:201810682839.6 (发明,公布) [3] 太赫兹表面等离子体共振传感装置及使用方法,申请号:201710615730.6 (发明,公布) [4] 基于掺杂的石墨烯THz‑SPR气体传感器系统及测试方法,申请号:201611026091.1 (发明,公布) [5] 一种新型学生自主机构创新设计实验台及其使用方法,专利号:ZL 201510007553.4 (发明,授权) [6] 一种脉动式无级变速器,专利号:ZL 201510081369.4 (发明,授权) [7] 浴室多功能组合柜,专利号:ZL 201410048675.3 (发明,授权)
|