个人简介
刘一剑,男,汉族,1987年3月生,山东单县人,群众,博士,讲师,硕士研究生导师。
学习及工作经历
2020.8-至今 山东科技大学电子信息工程学院,现任电子信息科学与技术系副系主任
2018.10-2020.8 芯恩集成电路有限公司,资深研发工程师
2013.9-2019.7 上海交通大学电子信息与电气工程学院电子科学与技术系学习,获工学博士学位
2011.9-2013.7 山东科技大学理学院物理电子学专业学习,获工学硕士学位
2006.9-2010.7 山东科技大学信息与电气工程学院电气工程及其自动化专业学习,获工学学士学位
著作章节:
Yijian Liu, Huey-Liang Hwang, Ying Wang, Jun Zhang and Lexi Shao, Some Essential Issues and Outlook for Industrialization of Cu-III-VI2 Thin-Film Solar Cells, Emerging Solar Energy Materials, IntechOpen, ISBN: 978-1-78923-583-8, 2018.
主持及参与项目
主持山东省自然基金青年项目一项,曾以主要人员身份参与科技部国家重点研发计划,参与国家863研发计划。
主讲课程
《模拟CMOS集成电路设计》、《模拟电子技术》、《集成电路制造技术》、《物联网技术与应用》
近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
1. Fully Soft Pressure Sensor Based on Bionic Spine-Pillar Structure for Robotics Motion Monitoring, Soft Robotics,18 Aug 2021. (通讯作者,SCI IF = 8.071)
2. Low-Cost, Large-Area, Multifunctional Stretchable E-Tattoos Inspired by Dough Figurines for Wearable Human-Machine Interfaces,Advanced Materials Technologies, 2021.(通讯作者,SCI IF = 7.848)
3. Strain Sensor with High Sensitivity and Large Response Range Based on Self-Assembled Elastic-Sliding Conductive Networks, ACS Appl. Electron. Mater. 2021, 3, 4, 1758–1770, April 18, 2021. (通讯作者,SCI IF = 3.314)
4. Flexible Large E-skin Array Based on Patterned Laser-induced Graphene for Tactile Perception,Sensors and Actuators A: Physical,2022. (通讯作者,SCI IF = 3.407)
5. Flexible Wireless Passive LC Pressure Sensor with Design Methodology and Cost-Effective Preparation August 2021 Micromachines 12(8):976. (通讯作者,SCI IF = 2.891)
6. Radio Frequency Resonator-Based Flexible Wireless Pressure Sensor with MWCNT-PDMS Bilayer Microstructure, Micromachines, 2022,13(3), 404. (通讯作者,SCI IF = 2.891)
7. Solidly mounted resonators fabricated for GHz frequency applications based on MgxZn1-xO piezoelectric film, Vacuum, 2017, vol. 141, pp. 254-258. (第一作者,SCI IF = 3.627)
8. Novel Performance of an Solidly Mounted Resonator with a AlN-buffered ZnO Piezoelectric Film, Vacuum, 2018, vol. 154, pp. 11-17. (第一作者,SCI IF = 3.627)
9. Magnesium Composition Effect on UV Sensing Performance based on the MgxZn1-xO Solidly Mounted Bulk Acoustic Resonator(第一作者,SCI IF = 2.478)
10. Finite element modeling and simulation of ultrasensitive film bulk acoustic resonator enabled by micropillar structure, April 2021 Modern Physics Letters B. (通讯作者,SCI IF = 1.668)
学术兼职
IEEE Menber;中国微米纳米技术学会高级会员;中国仪器仪表学会会员