教师简介
 
宫礼坤

»姓名:宫礼坤

»系属:基础物理系

»学位:博士

»职称:讲师

»学科:凝聚态物理

»导师类别:

»电子邮箱:gonglikun@foxmail.com

»联系电话:

»通讯地址:山东省青岛市黄岛区长江西路66号(邮编:266580

»概况

◎研究方向
1.
半导体摩擦伏特效应
2.
摩擦纳米发电机

3.气湿敏传感器

 

◎学习与工作经历
2017.9-2021.6
,中国石油大学(华东),计算机科学与技术学士;
2021.9-2026.6
,中国科学院大学,凝聚态物理博士;
2026.7-
至今,中国石油大学(华东),基础物理系,讲师。

 

◎主讲课程
1.
主讲本科生必修课。《大学物理》等课程

 

◎承担和参与项目
1.
近年来,主持的代表性科研项目:
1)中国科协青年科技人才培育工程博士生专项,中国科学技术协会,2025.11-2027.11
2.
近年来,参与的代表性科研项目:

1)国家重点研发计划“智能传感器”重点专项,中华人民共和国科学技术部,2023.12-2026.11

2)国家自然科学基金区域创新发展联合基金重点项目,国家自然科学基金委,2024.01-2027.12

3)国家自然科学基金原创探索计划项目,国家自然科学基金委,2023.01-2023.12

4)国家自然科学基金原创探索计划项目延续资助,国家自然科学基金委,2024.08-2026.12

5)北京市自然科学基金面上项目,北京市自然科学基金委,2024.01-2025.12

6)北京市自然科学基金怀柔创新联合基金,北京市自然科学基金委,2026.04-2029.03

7)深圳市超滑技术重点实验室开放基金资助项目,深圳市超滑技术重点实验室,2026.02-2027.02

 

◎获奖情况(除教师个人获奖之外,还包含指导学生获奖情况
1.2021
年第七届中国国际互联网+”大学生创新创业大赛全国金奖,2021年。
2.2023
年第八届中国国际互联网+”大学生创新创业大赛全国银奖,2023年。

 

◎荣誉称号(除教师个人获得荣誉之外,还包括指导学生获得荣誉情况)
1.
北京市优秀毕业生,2026年。

2.中国科学院大学三好学生标兵,2026年。

3.中国科学院大学优秀学生干部,优秀共产党员,2025年。

4.山东省优秀毕业生,2021年。

 

◎论文(#为共同一作,*为通讯作者)
1.第一作者主要论文:
1Likun Gong, Zhaozheng Wang, Ruifei Luan, Guoxu Liu, Beibei Fan, Yuan Feng, Jie Cao, Youchao Qi, Zhi Zhang, and Chi Zhang. Competitive Mechanism between Interfacial Electric Field and Built‐In Electric Field for Silicon‐Based Tribovoltaic Effect. Advanced Functional Materials(一区,IF19 34, 10 (2024): 2310703.

2Likun Gong, Zhaozheng Wang, Junqing Zhao, Jiajun Tang, Zheng Li, Weiqi Meng, Zhipeng Qiu et al. High-performance supercapacitor and ultra-sensitive humidity sensor based on bifunctional NiCo2O4/g-C3N4 nanocomposites powered by triboelectric nanogenerator. Chemical Engineering Journal(一区,IF13.2 477 (2023): 147087.

3Likun Gong#, Zhi Zhang#, Wenbo Yu, Jianhua Zeng, Jie Cao, Beibei Fan, Junqing Zhao, Chi Zhang*. Ultra-Durable Polysilicon Based Tribovoltaic Nanogenerators for Bearing In Situ Rotational Speed Sensing. Small(二区,IF12.1, 2024, 20, 2405992.

4Likun Gong, Xingwei Wang, Dongzhi Zhang, xiaodong Ma, and Sujing Yu. Flexible wearable humidity sensor based on cerium oxide/graphitic carbon nitride nanocomposite self-powered by motion-driven alternator and its application for human physiological detection. Journal of Materials Chemistry A(二区,IF9.5 9, 9 (2021): 5619-5629.

5Likun Gong#, Zhi Zhang#, Luan Ruifei, Feng Yuan, Gao Mang, & Zhang Chi. (2025). Self-powered Technologies for Smart Bearings. Fundamental Research(国家自然科学基金委主办,二区,IF6.3.

6Wang, X. #, Likun Gong #, & Zhou, X. (2026). Ammonia Gas Sensor Fabricated by Multifunctional ZnO/GO Nanocomposites for Long‐Term, Self‐Powered Monitoring. Advanced Science(一区,IF14.1, 13(10), e16833.

7Luo, F. #, Likun Gong #, Liu, G., Luan, R., Zhao, J., & Zhang, C. (2026). Recent Advancements in the Tribovoltaic Effect for Human Motion Energy Harvesting and Wearable Self-Powered Sensing. Wearable Electronics.

8Jiang, Z. #, Qi, Y. #, Likun Gong #, Fu, X., Zhao, J., Han, Q., & Zhang, C. (2026). Ultra-Broadband triboelectric vibrational energy harvester based on Ecoflex elastomer. Nano Energy(一区,IF17.1, 111893.

9Wenbo Yu#, Likun Gong#, Weilin Zhou, Zhi Zhang*, Chi Zhang*, Yuanfen Chen*, A tapered rolling bearing based on tribovoltaic effect for active rotational speed sensing. Nano Energy(一区,IF17.1, 2025, 134, 110607.

10Zhaozheng Wang #, Likun Gong#, Sicheng Dong, Beibei Fan, Yuan Feng, Zhi Zhang, and Chi Zhang. A humidity-enhanced silicon-based semiconductor tribovoltaic direct-current nanogenerator. Journal of Materials Chemistry A(二区,IF9.5 10, no. 47 (2022): 25230-25237.

11Xingwei Wang#, Likun Gong#, Zheng Li, Yingda Yin, and Dongzhi Zhang. A room temperature ammonia gas sensor based on cerium oxide/MXene and self-powered by a freestanding-mode triboelectric nanogenerator and its multifunctional monitoring application. Journal of Materials Chemistry A(二区,IF9.5 11, no. 14 (2023): 7690-7701.

12Likun Gong, Lan Yang, Siyi Yang, Yuanze Wang, Minjing Zhong, and Liang Guo. Study on Reciprocal Models for Magneto-Acousto-Electrical Tomography With Coil Detection. IEEE Access 7 (2019): 154076-154083.

13Likun Gong, Hong Yu, Jialiang Zhang, Wenting Wu, and Liang Guo. Investigation of gas-liquid discharge characteristics in atmospheric air and argon. Journal of Electrostatics 117 (2022): 103718.
2.通讯作者主要论文:
1Ma, M., Li, Z., Zhu, W., Ju, M.*, & Gong, L*. (2025). Self-powered ammonia gas sensor based on Ga2O3/Mo2Ti2AlC3 nanocomposite material for environmental monitoring in chicken farms. Chemical Engineering Journal(一区,IF13.2, 510, 161722.

2Li, J., Xie, S., Zhu, W., Di, W. *, & Gong, L*. (2025). Self-powered ammonia gas sensor based on Ta2O5/Nb2AlC nanocomposites for environmental monitoring in vegetable greenhouses. Journal of Environmental Chemical Engineering(二区,IF7.2, 13(1), 115294.

3Yang, J., Zhang, Z., Fu, J., Wu, Y., Fu, Q. *, & Gong, L*. (2026). Humidity sensor based on PEDOT: PSS/CeO2 composite material for respiratory monitoring of anesthetized patients. Applied Surface Science(二区,IF6.9, 167262.
4Zhang, S., Wang, Y.*, Gong, L* (2026). Broadband Wind-Driven Hybrid Triboelectric–Electromagnetic Generator for Sufficient Self-Powered Atmospheric Environment Monitoring. Micromachines.

详情请见:https://sc.panda985.com

 

◎专利
1.
-碳量子点-四氰合镍酸钴三元杂化材料在氨传感中的应用及其制备方法和膜传感器,ZL202110342042.32022年。
2.
基于二维超薄四氰合镍酸钴薄膜制备方法及其在氨气敏感检测中的应用,ZL202110342015.62022年。

3.碳量子点-四氰合镍酸钴复合材料的氨气传感器制备方法及其应用,ZL202110342042.32022年。

4.一种纳秒脉冲电场诱导热声信号处理方法及系统,ZL202010173737.92021年。

5.一种纳秒脉冲电场诱导热声成像的电导率重建方法,ZL202010173817.42021年。

6.基于等离子体改善岩石表面水润湿性的方法及应用,ZL202010124964.22022年。

7.基于神经网络的三相交流异步电机多参数寿命预测方法,ZL201911354074.42021年。

8.基于原位聚合二元纳米复合材料的氨气传感器制备方法及应用,ZL201911025632.22020年。

9.针对呼出气的湿度传感器制备方法及其检测系统,ZL201910395561.92020年。

 

学术兼职
Lubricants》期刊客座编辑;担任《Chemical Engineering Journal》、《Nano Energy》等多个期刊审稿人。