学术论文:
1. Xinwei Wang*, Jiayi Guo, Kangning Xu, et al., In situ self-assembled NiS2 nanoparticles on MXene nanosheets as multifunctional separators: Regulating shuttling effect and boosting redox reaction kinetics of lithium polysulfides . Applied surface science, 2024, 645,158859.
2. Yuemin Li, Xinlong Bao, Xinwei Wang*, et al., Co-impregnated N-doped carbon nanotube/SiO2 modified separators as efficient polysulfide barrier for lithium-sulfur batteries. ACS Applied Nano Materials, 2023,6(20),18780-18789.
3. Lianshan Sun, Xinlong Bao, Yuemin Li, Jianxun Zhao, Peng Chen, Heng Liu, Xinwei Wang, Wanqiang Liu, CoS2 and FeS2 nanoparticles embedded in carbon polyhedrons for lithium-sulfur batteries. ACS Applied Nano Materials, 2023,6(13),111095-11103.
4. Xinlong Bao, Yuemin Li, Lianshan Sun,Jianxun Zhao, Peng Chen, Heng Liu, Xinwei Wang, Wanqiang Liu, Ni-Mo2C hollow carbon nanospheres with enhanced performance as the cathode for lithium sulfur batteries. ELECTROCHIMICA ACTA, 2023, 441, 141846.
5. Xinlong Bao, Yuemin Li, Wanqiang Liu Jianxun Zhao, Peng Chen, Heng Liu, Xinwei Wang, Lianshan Sun, Preparation of Co9S8-Mo2C nanoparticles and their application in lithium-sulfur batteries. Journal of Alloys and Compounds, 941(4), 168903.
6. Bowen Zhang, Xinwei Wang*, Dengkui Wang, et al., Ultrafast charge carrier dynamics and nonlinear optical absorption of InP/ZnS core–shell colloidal quantum dots. The Journal of Physical Chemistry C, 2019, 123 (44) , 27207-27213.
7. Mei Gao, Xinwei Wang*, Yuanze Hong, et al, One-pot hydrothermal synthesis of thin tellurene nanosheet and its formation mechanism[J], Journal of Nanomaterials. ID 5715291, 2019 (2019). DOI: 10.1155/2019/5715291
8. 赵海霞,王新伟*,等, 衬底钝化处理对CsPbBr3量子点薄膜发光稳定性影响[J], 光谱学与分析, 2019,39(6):1706-1710.
9. 高美,李浩林,王登魁,王新伟等,Ar等离子体处理对GaAs纳米线发光特性的影响[J], 中国激光, 2019,2: 0211005-1-6.
10. Haoran Zhang, Xinwei Wang*, Xinyang Cai, et al., Facile synthesis via a solvent molecular template and formation mechanism of uniform zinc antimony nanorods[J], Journal of Materials Science: Materials in Electronics, 2018, 29(12), 10445-10452.
11. Bowen Zhang, ZhiPeng Wei*, Xinwei Wang, et al. Effect of post thermal annealing on the optical properties of InP/ZnS quantum dot films[J], Nanoscale research letters, 2018, 369,1-8
12. 蔡昕旸,王新伟*等,铟锡氧化物薄膜表面等离子体损耗降低的研究[J],物理学报,2018,67, 180201
13. 蔡昕旸,王新伟*等,ITO薄膜表面等离子体共振波长可控调节的研究[J], 激光与光电子学进展, 2018,55(5):051602.
14. Dengkui Wang, Xue Liu, Xinwei Wang, et al.,The optical property improvement of GaAs via surface passivation and carriers restriction of MgO film[J], Ferroelectrics, 2018,60:60-65.
15. Wei Li, Dengkui Wang, Xinwei Wang, et al.,Enhancement of a Cu2O/ZnO photodetector via surface plasmon resonance induced by Ag nanoparticles[J], Optical Materials Express, 2018,11:3561-3565.
16. Xinwei Wang, Shichen Su, Dan Fang, et al.,Facile synthesis and formation mechanism of uniform antimony nanotubes[J], Functional materials letters,2017,10(5):1750064
17. Shouzhu Niu, Zhipeng Wei, DengkuiWang, Xinwei Wang, et al., Brief review of epitaxy and emission properties of GaSb and related semiconductors[J], 2017,11:1-21.
18. R. Li, Z. Wei, F. Zhao, X. Gao, X. Fang, X. Wang, et al., Investigation of localized and delocalized excitons in ZnO/ZnS core-shell heterostructured nanowires[J], Nanophotonics, 2017, 6(10), 1515.
19. Ruxue Li, Xiaohua Wang, Xinwei Wang*, et al., Synthesis of antimony nanotubes via facile template-free solvothermal reactions[J], Nanoscale Research Letters (2016) 11:486
20. Wang X W, Tian H W, Cui X Q, Zheng W T*, Liu Y C, One-pot hydrothermal synthesis of mesoporous ZnxCd1-xS/reduced graphene oxide hybrid material and its enhanced photocatalytic activity[J], Dalton Trans., 2014, 43: 12894-12903.
21. Wang X W, Tian H W, Zheng W T*, Liu Y C, Visible photocatalytic activity enhancement of Zn0.8Cd0.2S by hybridization of reduced graphene oxide[J], Mater. Let., 2013, 109: 100-103.
22. Wang X W, Tian H W, Yang Y, Wang H, Wang S M, Zheng W T*, Liu Y C, Reduced graphene oxide/CdS for efficiently photocatalystic degradation of methylene blue[J], J. Alloy. Compd., 2012, 524: 5-12.
23. Wang H, Tian H W, Wang X W, Qiao L, Wang S M, Wang X L, Zheng W T*, Liu Y C, Electrical conductivity of alkaline-reduced graphene oxide[J], Chem. Res. Chinese U., 2011, 27: 857-861.
24.王新伟,杨艳,田宏伟,郑伟涛*, 石墨烯的化学方法制备及其表征[J]. 中国科技论文, 第6卷,第3期,187-190页,2011.
25.王新伟,臧春雨,周艳艳. Fe-Ni/Ti填充碳纳米管的制备和表征[J] 长春理工大学学报:自然科学版, 2009, (3):413-415.
26.王新伟,于凤霞, 酸溶法光纤传像束酸溶特性的研究[J] 长春理工大学学报:自然科学版, 2007,2:100-101.
27.于凤霞,刘禹,王新伟等, 酸溶法光纤传像束透光性能的研究 [J],光学技术2007, 4: 539-542.
28. 周艳艳,王新伟,裴春燕,影响光学玻璃化学稳定性测定结果的因素分析[J],2007,1:95-97.
教研论文:
1.吴玉辉,王新伟, “双一流”建设背景下高等院校教师培养与发展[J]. 高教学刊, 2023.9(28),28-31.
2.王新伟,赵建勋,宋静, 材料工程基础课程教学模式的改革与实践[J]. 长春教育学院学报, 2015.31(1),69-70.
3. 王新伟,赵建勋,李艳伟, 材料工程基础课程的实验教学改革与实践[J]. 长春教育学院学报, 2015.31(7),70-71.
申请与授权专利:
1. 魏志鹏;贾慧民;唐吉龙;牛守柱;王登魁;王新伟;等。一种提高N型GaSb基半导体激光器材料掺杂浓度的方法。2019-09-27,中国, ZL201810006341.8
2. 魏志鹏;郭德双;唐吉龙;王华涛;徐英添;范杰;郝永芹;王新伟等,一种低应力散热层半导体衬底及其制备方法和应用,发明专利,2019-12-30,中国,CN201911397643.3
3. 魏志鹏;唐吉龙;王登魁;王新伟等, 一种垂直腔面发射半导体激光器制备方法,发明专利,2017-08-18,中国,CN201710352038.9
4. 郑伟涛,王新伟,田宏伟,“一种 Zn0.8Cd0.2S 和石墨烯复合材料的制备方法”,申请日期:2013.07.11,申请号:201310289371.1。