赵志俊

硕士生导师

办公地点:犀浦校区3号教学楼31617号

性别:男

在职信息:在岗

毕业院校:韩国釜山大学

所在单位:城市轨道交通学院(智慧城市与交通学院)

通讯/办公地址:

邮箱:

科学研究

当前位置: 中文主页 >> 科学研究
研究方向

      我们的主要研究兴趣在于微纳米结构和器件的设计和制造,及其在环境监测和医疗保健、柔性和可穿戴电子产品以及微纳米结构和器件的可靠性方面的应用。 

    图片1.png

      在这些研究方向中,我们主要致力于以下三个研究领域:

    (1)基于功能微/纳米结构的高性能化学和物理传感器,用于环境和医疗保健应用


    (2)用于先进电子产品的多尺度和混合制造技术, 环境和传感应用


    (3)基于纳米材料的设备和系统的力学和可靠性。

论文成果

    研究成果已在 ACS Nano (IF:17.1), Small (IF: 13.3), ACS Sensors (IF: 8.9), ACS Applied Materials & Interface (IF: 9.5)等期刊发表学术论文60余篇,含封面论文9篇。


    2025年论文发表

    [1] Tianyang Mo, Wenhui Ma, Xianwu Xu, Ran Xiong, Hongbo Wang, Yidong Hou, Bingjun Yu, Linmao Qian*, Zhi-Jun Zhao* Suspended half-pipe nanostructures on nanoimprinted substrates for multigas identification” Sensors and Actuators B: Chemical, 2025. (IF: 7.7)

    [2] Yifei HanJiaqian Xu, Ye Liu, Wenhui Ma, Hongbo Wang, Yidong Hou, Bingjun Yu, Linmao Qian, Zhi-Jun Zhao*Eragrostis ferruginea-Inspired Capacitive Pressure Sensor with High Sensitivity and Broad Range for Multidimensional Applications” ACS Applied Materials & Interfaces, 2025. (IF: 8.2)

    [3] Haotian Shi, Kaiqi Ren, Honglin Jiang, Hongbo Wang, Bingjun Yu, Linmao Qian, Zhi-Jun Zhao* “Honeycomb-Shaped Flexible Capacitive Pressure Sensor with Ultrahigh Sensitivity and an Exceptionally Broad Linear Response Range” ACS Applied Materials & Interfaces, 2025. (IF: 8.2)

    [4] Xianwu Xu, Mengxin Liu, Yuanping Zhang, Hongbo Wang, Linmao Qian, Bingjun Yu, Zhi-Jun Zhao* “High-Performance Hydrogen Sensors for ppb-Level Detection at Room Temperature Using Pd Nanoparticle-Coated Si Nanoforest” ACS sensors, 2025. (IF: 9.1) 

    [5] Xianwu Xu, Tianyang Mo, Ran Xiong, Hongbo Wang, Linmao Qian, Bingjun Yu, Zhi-Jun Zhao* “Pd-Coated Porous Silicon Microcones for High-Performance Hydrogen Sensing at Room Temperature” ACS Applied Materials & Interfaces, 2025. (IF: 8.2)

    [6] Xianwu Xu, Tiejun Fang, Tianyang Mo, Hongbo Wang, Hongwei Tao, Min Gao, Jing Wang, Linmao Qian, Bingjun Yu, Zhi‐Jun Zhao* “3D Double‐Layer Suspended Nanostructures Fabricated via Plasma‐Assisted Nanotransfer Printing” Advanced Materials Technologies, 2025. (IF: 6.2) 

    [7] Hyojin An, Zhi-Jun Zhao, Minje Kim, Sang Ho Shin, Ji-Hwan Ha, Jun-Ho Jeong, Jun-Hyuk Choi, Dae Geun Choi, Eun-Ji Gwak, Byeong-Kwon Ju, Joo-Yun Jung “Fabrication of porous Au nanowires on a mirror featuring ultrahigh-density nanogaps via plasma-assisted nanotransfer printing for enhanced SERS” Applied Surface Science Advances, 2025. (IF: 8.7) 

    [8] Youngkyu Hwang, Zhi-Jun Zhao#, Sangho Shin, Tun Naw Sut, Joshua A Jackman, Taehoon Kim, Yuhyun Moon, Byeong-Kwon Ju, Jun-Ho Jeong, Nam-Joon Cho, Munho Kim “Nanopot plasmonic sensor platform for broad spectrum virus detection” Chemical Engineering Journal, 2025. (IF: 13.2)

    [9] Zhi‐Jun Zhao, Sang‐Ho Shin, Xianwu Xu, You Jin Kim, Zu‐Po Yang, Soonhyoung Hwang, Sohee Jeon, Bingjun Yu, Linmao Qian, Byeong‐Kwon Ju, Jun‐Ho Jeong, Munho Kim “High‐Uniformity, Shape‐Controlled Silicon Nanowires for Enhanced Performance in Optoelectronic Devices” Small Methods, 2025. (IF: 9.1) [韩国机械研究院共同研究成果]

    [10] Mengxin Liu, Yuanping Zhang, Kun Wang, Zesen Zhang, Bingjun Yu, Hongbo Wang, Zhi-Jun Zhao*, Linmao Qian, Min Gao, Jing Wang “Facile Nanostructures via Nanoimprinting for Biomedical Devices” Biomedical Instrumentation, 2025.


    2024年论文发表

    [1] Tianyang Mo, Xianwu Xu, Tiejun Fang, Hongwei Tao, Hongbo Wang, Ming Liang Jin, Bingjun Yu, Linmao Qian, Zhi-Jun Zhao* “High Response and ppb-Level Detection toward Hydrogen Sensing by Palladium-Doped α-Fe2O3 Nanotubes” ACS sensors, 2024. (IF: 9.1)

    [2] Zhuorui Chen, Yixin Ma, Hongbo Wang, Bingjun Yu, Linmao Qian, Zhi-Jun Zhao* “Starfish-inspired ultrasensitive piezoresistive pressure sensor with an ultra-wide detection range for healthcare and intelligent production” Chemical Engineering Journal, 2024. (IF: 13.2)

    [3] Yuhang Wang, Ranxu Jing, Junxiang Jiang, Hongbo Wang, Linmao Qian, Bingjun Yu, Zhi-Jun Zhao* “Coral-inspired capacitive pressure sensor with high sensitivity and wide range for human–computer interaction” ACS Applied Electronic Materials, 2024. (IF: 4.7)

    [4] Tingting Chen, Licong Cui, Wang He, Zhi-jun Zhao, Huiyun Liu, Linmao Qian, Bingjun Yu “Fabrication of Conical Microstructure Array for Stable Droplet Generation Over Wide Flow Rate Range” Small, 2024. (IF: 12.1)

    [5] Ji‐Hwan Ha, Inyeong Yang, Junseong Ahn, Sukkyung Kang, Zhi‐Jun Zhao, Yongrok Jeong, Hyeongmin Je, Joono Cheong, Soon Hyoung Hwang, Sohee Jeon, Jun‐Ho Jeong, Sanha Kim, Inkyu Park “Nanotransfer printing for synthesis of vertically aligned carbon nanotubes with enhanced atomic penetration” Advanced Functional Materials, 2024. (IF: 19.0)

    [6] Lei Wu, Xuan Li, Jungrak Choi, Zhi‐Jun Zhao, Linmao Qian, Bingjun Yu, Inkyu Park “Beetle‐Inspired Gradient Slant Structures for Capacitive Pressure Sensor with a Broad Linear Response Range” Advanced Functional Materials, 2024. (IF: 19.0 ) 

    [7] Hongwei Tao, Sha Li, Zhi-jun Zhao, Zhengyou He, Kangli Wang, Kai Jiang, Haitao Hu “Low-surface-area nitrogen-doped carbon submicrospheres as high-coulombic-efficiency and high-capacity anodes for practical sodium-ion batteries” ACS Applied Materials & Interfaces, 2024. (IF: 8.2)

    [8] Boqing Jia, Zhikang Li, Tengfei Zheng, Jiaxiang Wang, Zhi-Jun Zhao,Libo Zhao, Bin Wang, Jijian Lu, Kang Zhao, Guoxi Luo, Min Li, Qijing Lin, Zhuangde Jiang “Highly-sensitive, broad-range, and highly-dynamic MXene pressure sensors with multi-level nano-microstructures for healthcare and soft robots applications” Chemical Engineering Journal, 2024. (IF: 13.2)


    2023年论文发表

    [1] Hongbo Wang, Yang Wang, Zhi‐jun Zhao, Xinchuan Du, Anjun Hu, Miao Zhang, Kai Tang, Ting Zhou, Yuchen Tian, Linmao Qian, Xianfu Wang “Synergistic Enhancement Mechanism of High Electron Density and Localized Surface Plasmons for Strong Light‐Matter Interactions” Advanced Electronic Materials, 2023. (IF: 5.3)

    [2] Bongkwon Son, Sang‐Ho Shin, Zhi‐Jun Zhao#, Byeong‐Kwon Ju, Jun‐Ho Jeong, Munho Kim, Chuan Seng Tan “High‐Efficiency Silicon Nanowire Array Near Infrared Photodetectors via Length Control and SiOx Surface Passivation” Advanced Materials Technologies, 2023. (IF: 6.2)

    [3] Min Gao, Yi‐Bo Zhao, Zhi‐Jun Zhao*, Guangyu Qiu, Yile Tao, Guochen Bao, Ying Du, Martin Spillmann, Jiukai Tang, Soonhyoung Hwang, Jun‐Ho Jeong, Jing Wang “Wafer‐Scale Gold Nanomesh via Nanotransfer Printing toward a Cost‐Efficient Multiplex Sensing Platform” Advanced Materials Technologies, 2023. (IF: 6.2)

    [4] Lei Wu, Junseong Ahn, Jungrak Choi, Jimin Gu, Xuan Li, Osman Gul, Zhi-Jun Zhao, Linmao Qian, Bingjun Yu, Inkyu Park “Customizable self-powered pressure sensor based on piezo-transmittance of tilted structures” Nano Energy, 2023. (IF: 17.1)


    2022年论文发表

    [1] Lei Wu, Kedong Shang, Tingting Chen, Chengqiang Feng, Tingting Yang, Zhi-Jun Zhao, Bingjun Yu, Linmao Qian “Template-free lithography for cross-scale channels towards enhancing nanofluidic devices” Sensors and Actuators B: Chemical, 2022. (IF: 7.7)

    [2] Moonjeong Bok, Zhi-Jun Zhao#, Soon Hyoung Hwang, Junseong Ahn, Jiwoo Ko, Joo-Yun Jung, Jihye Lee, Sohee Jeon, Jun-Ho Jeong “Functional asymmetry-enabled self-adhesive film via phase separation of binary polymer mixtures for soft bio-integrated electronics” ACS nano, 2022. (IF: 16.0)

    [3] Zhi-Jun Zhao, Sang-Ho Shin, Sang Yeon Lee, Bongkwon Son, Yikai Liao, Soonhyoung Hwang, Sohee Jeon, Hyeokjoong Kang, Munho Kim, Jun-Ho Jeong “Direct chemisorption-assisted nanotransfer printing with wafer-scale uniformity and controllability” ACS nano, 2022. (IF: 16.0)

    [4] Bongkwon Son, Sang-Ho Shin, Yuhao Jin, Yikai Liao, Zhi-Jun Zhao, Jun-Ho Jeong, Qi Jie Wang, Xincai Wang, Chuan Seng Tan, Munho Kim “A heavily doped germanium pyramid array for tunable optical antireflection in the broadband mid-infrared range” Journal of Materials Chemistry C, 2022. (IF: 5.1)

    [5] Yikai Liao, Yixiong Zheng, Sang‐Ho Shin, Zhi‐Jun Zhao, Shu An, Jung‐Hun Seo, Jun‐Ho Jeong, Munho Kim “Distinct UV–Visible Responsivity Enhancement of GaAs Photodetectors via Monolithic Integration of Antireflective Nanopillar Structure and UV Absorbing IGZO Layer” Advanced Optical Materials, 2022. (IF: 7.2)

    [6] Zhi-Jun Zhao, Junseong Ahn, Dongheon Lee, Chan Bae Jeong, Mingu Kang, Jungrak Choi, Moonjeong Bok, Soonhyoung Hwang, Sohee Jeon, Sooyeon Park, Jiwoo Ko, Ki Soo Chang, Jung-Woo Choi, Inkyu Park, Jun-Ho Jeong “Wafer-scale, highly uniform, and well-arrayed suspended nanostructures for enhancing the performance of electronic devices” Nanoscale, 2022. (IF: 5.1)


    2022年以前代表作

    [1] Zhi-Jun Zhao, Jiwoo Ko, Junseong Ahn, Moonjeong Bok, Min Gao, Soon Hyoung Hwang, Hyeok-Joong Kang, Sohee Jeon, Inkyu Park,* and Jun-Ho Jeong*3D layer-by-layer Pd-containing nanocomposite platforms for enhancing the performance of hydrogen sensorsACS sensors 5.8 (2020): 2367-2377. 中科院TOP期刊

    [2] Zhi-Jun Zhao Junseong Ahn, Soon Hyoung Hwang, Jiwoo Ko, Yongrok Jeong, Moonjeong Bok,Hyeok-Joong Kang, Jungrak Choi, Sohee Jeon, Inkyu Park,* and Jun-Ho Jeong* “Large-area nanogap-controlled 3D nanoarchitectures fabricated via layer-by-layer nanoimprint”ACS Nano 15.1 (2021): 503-514. 中科院TOP期刊

    [3] Zhi-Jun Zhao  Sang-Ho Shin, Dae-Geun Choi, Sang-Hu Park,* and Jun-Ho Jeong*Shape‐Controlled 3D Periodic Metal Nanostructures Fabricated via NanoweldingSmall 14.6 (2018): 1703102. 中科院TOP期刊

    [4] Zhi-Jun Zhao Junseong Ahn, Jiwoo Ko, Yongrok Jeong, Moonjeong Bok, Soon Hyoung Hwang, Hyeok-Joong Kang, Sohee Jeon, Jungrak Choi, Inkyu Park,* and Jun-Ho Jeong* Shape-controlled and well-arrayed heterogeneous nanostructures via melting point modulation at the nanoscaleACS Applied Materials & Interfaces 13.2 (2020): 3358-3368. 

    [5] Zhi-Jun Zhao, Soon Hyoung Hwang, Hyeok-Joong Kang, Sohee Jeon, Moonjeong Bok, Sunggyun Ahn, DaJeong Im, Joonku Hahn, Hwi Kim, and Jun-Ho Jeong*"Adhesive-layer-free and double-faced nanotransfer lithography for a flexible large-area metasurface hologram." ACS applied materials & interfaces 12.1 (2019): 1737-1745.




科研项目

    主持/参与项目


    (主持)国家自然科学基金面上项目(52375578),2024.01-2027.12


    (主持)四川省自然科学基金青年项目 (Q115323S09003),2023.01-2024.12


    (主持)西南交通大学新型交叉学科培育基金-前沿科技培育项目(YH15001124322102),2023.01-2023.12


    (主持)高校科研启动项目经费(YH1100312372206),2022.01-2024.12


    (主持)中央高校科研经费(A0920502052301-144),2022.01-2023.12

专利

    暂无内容

报考该导师研究生的方式

欢迎你报考赵志俊老师的研究生,报考有以下方式:

1、参加西南交通大学暑期夏令营活动,提交导师意向时,选择赵志俊老师,你的所有申请信息将发送给赵志俊老师,老师看到后将和你取得联系,点击此处参加夏令营活动

2、如果你能获得所在学校的推免生资格,欢迎通过推免方式申请赵志俊老师研究生,可以通过系统的推免生预报名系统提交申请,并选择意向导师为赵志俊老师,老师看到信息后将和你取得联系,点击此处推免生预报名

3、参加全国硕士研究生统一招生考试报考赵志俊老师招收的专业和方向,进入复试后提交导师意向时选择赵志俊老师。

4、如果你有兴趣攻读赵志俊老师博士研究生,可以通过申请考核或者统一招考等方式报考该导师博士研究生。

点击关闭