主要科研成果 | 代表性论文: 1.Zhang, S.; Wang, L.; Luo, Y.; Wang, K.; Li, Y.; Feng, X.; Pei, Y.; Zhang, Z.; Lu, B., A novel UV-curable molecular-modified graphene oxide for high-resolution printed electronics[J]. Carbon 2021, 176(1), 470-479. (中科院一区,IF2021:11.307) 2.Zhang S.; Wang L.; Luo Y.; Wang K.; Feng X.; Pei Y.; Wu H.; Li Y.; Wang Z.; Lu B., A Convenient, Low-Cost Graphene UV-Cured Additive Manufacturing Electronic Process to Achieve Flexible Sensors[J]. Chemical Engineering Journal 2023, 451(1), 138521. (中科院一区,IF2021:16.744) 3.Luo Y.; Zhu B.; Zhang S.; Zhang P.; Li X.; Wang L.; Lu B.; Travas-Sejdic J., Stretchable and Flexible Non-enzymatic Glucose Sensor Based on Poly(ether sulfone)-derived Laser Induced Graphene for Wearable Skin Diagnostics[J]. Advanced Materials Technologies 2022, 7(9), 2101571. (中科院二区,IF2021: 8.856) 4.Zhu, B.; Luo, Y.; Beikzadeh, S.; Zhang, S.; Zhang, P.; Wang, L.; Travas-Sejdic, J., Disposable and portable gold nanoparticles modified-laser-scribed graphene sensing strips for electrochemical, non-enzymatic detection of glucose[J]. Electrochimica Acta 2021, 378(1), 138132. (中科院二区,IF2021:7.336) 5.Luo, Y.; Ning, T.; Pei, Y.; Feng, X.; Zhang, S.; Lu, B.; Wang, L., High-performance and tailored honeycombed Ag nanowire networks fabricated by a novel electrospray assisted etching process[J]. Appl Surf Sci 2022, 571(1), 151081. (中科院一区,IF2021:7.392) 6.Feng, X.; Wang, L.; Huang, Y. Y. S.; Luo, Y.; Ba, J.; Shi, H. H.; Pei, Y.; Zhang, S.; Zhang, Z.; Jia, X.; Lu, B., Cost-Effective Fabrication of Uniformly Aligned Silver Nanowire Microgrid-Based Transparent Electrodes with Higher than 99% Transmittance[J]. ACS Appl Mater Interfaces 2022, 14(34), 39199–39210. (中科院一区,IF2021:10.383) 已授权发明及国际专利: 7.一种可光固化氧化石墨烯及其制备方法,专利号:ZL201910318224X; 8.一种基于导电凝胶附着力增强型摩擦纳米发电机制备方法,专利号:ZL2020106405670; 9.Photocurable graphene oxide and preparation method therefor. PCT: WO2020211183A1。
科研项目: 10.陕西科技大学自然科学研究基金项目,126022368,氧化石墨烯功能改性方法研究,2023/09-2027/08,20万,主持; 11.国家自然科学基金国际合作项目,8211101107,全喷墨打印的高灵敏度COVID-19双检测FET传感器,2021/07-2023/06,150万,核心参与。 |