李培强,男,1978年8月生人,博士,教授,博士生导师,学校1512第二层次,校杰出青年人才。青岛科技大学兼职教授。主要科学研究:新型光电纳米催化剂用于环境污染物的氧化处理;新型光电纳米催化剂的合成及其在二氧化碳以及氮氧化物上的应用研究;光碳核剂的合成及其对作物补光补碳机理研究。目前跟美国的Iowa State University,澳大利亚的Curtin University,以及国内的多所科研机构有着密切的科研合作。主持2项国家课题,4项省级课题, 8项校企合作横向课题,在Nanoscale、Appl. Catal. B-Environ.等期刊发表SCI论文30余篇,论文引用882次,Google scholar的i10-index为22,五年平均影响因子单篇最高10.212,累计IF大于140,申请专利4项,授权2项。

联系电话:0538-8242251    E-mail:pqli@sdau.edu.cn

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教育工作经历

2018/06 - 至今,山东农业大学,化学与材料科学学院,教授,博士生导师(期间:青岛科技大学,环境与安全工程学院,兼职教授)

2014/07 - 2018/06,山东农业大学,化学与材料科学学院,副教授(期间:2015/09 - 2016/07Iowa State UniversityChemical & Biological EngineeringVisitor Scholar2016/07 - 2017/08Curtin UniversityChemical EngineeringVisitor Scholar.

2010/07 - 2014/06,山东农业大学,化学与材料科学学院,讲师

2007/03 - 2010/07,同济大学,化学院,理学博士研究生

  

要承担科研项目

1. 十二五国家科技部支撑计划子课题,新型缓控释肥包膜材料的合成工艺及开发,2011BAD11B01-01F

2. 国家青年基金项目,光电双催化界面共存纳米电极的设计合成及其协同还原二氧化碳制液态碳质燃料的研究,21203114

3. 山东省自然科学基金,稀土半导体光电协同催化还原CO2质子耦合电子转移反应原位研究,ZR2017MB018

4. 山东京博控股股份有限公司,p-n异质结制备及光电催化CO2制液态碳质燃料研究,38826

代表性科研论文*为通讯作者,影响因子为五年平均)

2019

1. JinguiZheng,XiaojieLi, YuhuQin, ShuqinZhang, MingshengSun, XiaoguangDuan, HongqiSun, PeiqiangLi*, ShaobinWang, Zn phthalocyanine/carbon nitride heterojunction for visible light photoelectrocatalytic conversion of CO2 to methanol, doi.org/10.1016/j.jcat.2019.01.022, IF=7.502

2018

2. Ershuan Han, Fengyun Hu, Shuai Zhang, Bo Luan, PeiqiangLi*, Hongqi Sun, Shaobin Wang, Worm-like FeS2/TiO2 Nanotubes for Photoelectrocatalytic Reduction of CO2 to Methanol under Visible Light, Energy & Fuels, 32 (2018) 4357-4363. IF=3.622

3. Ershuan Han, Shuai Zhang, Fusui Lu, Fengyun Hu, Jingui Zheng, Kunzhan Meng, Zhengbin Pan, PeiqiangLi*, Hongzong Yin, Stability of easily hydrolyzable beta-cypermethrin based O/W type drug-loading microemulsion, Journal of Dispersion Science and Technology, DOI: 10.1080/01932691.2018.1496831, IF=1.19  

2017

4. Wei Wei, Zhongxue Yang, Weijie Song, Fengyun Hu, Bo Luan, PeiqiangLi*, Hongzong Yin*, Different CdSeTe Structure Determined Photoelectrocatalytic Reduction Performance for Carbon Dioxide. Journal of Colloid and Interface Science, 2017,496, 327-333, IF=4.281

5. Zhongxue Yang, Huying Wang, Weijie Song, Wei Wei, Qingping Mu, Bo Kong, Peiqiang Li*, Hongzong Yin*, One Dimensional SnO2 NRs/Fe2O3 NTs with Dual Synergistic Effects for Photoelectrocatalytic Reduction CO2 into Methanol. Journal of Colloid and Interface Science, 2017,486, 232-240, IF=4.281  

2015

6. Hui PengJing LuChenxiao WuZhongxue YangHan ChenWeijie SongPeiqiangLi*Hongzong YinCo-doped MoS2 NPs with matched energy band and low overpotential high efficiently convert CO2 to methanolApplied Surface Science2015,7, 3531003-1012, IF=3.743

2014

7. Peiqiang Li*, Haitao Hu, Jinfeng Xu, Hua Jing, Hui Peng, Jing Lu, Chenxiao Wu, Shiyun Ai. New insights into the photo-enhanced electrocatalytic reduction of carbon dioxide on MoS2-rods/TiO2 NTs with unmatched energy band, Appl. Catal. B-Environ., 2014, 4, 147 (5), 912-919. IF=10.212

8. Peiqiang Li*, Jun Zhang, Huying Wang, Hua Jing, Jinfen Xu, Xiaona Sui, Haitao Hu, and Hongzong Yin*.The photoelectric catalytic reduction of CO2 tomethanol on CdSeTe NSs/TiO2 NTs. Catal. Sci. Technol. 2014, 4, 1070-1077. IF=5.365

9. Peiqiang Li*, Xiaona Sui, Hua Jing, Jinfeng Xu, Chenxiao Wu, Hui Peng, Jing Lu, Hongzong Yin*, Worm-like InP/TiO2NTs heterojunction with unmatched energy band photo-enhanced electrocatalytic reduction of CO2 to methanol, Chem. Eng. J, 2014,7, 247, 25-32. IF=6.496

10. Peiqiang Li*, Jinfeng Xu, Hua Jing, Chenxiao Wu, Hui Peng,Jing Lu, Hongzong Yin*, Wedged N-doped CuO with More Negative Conductive Band and Lower Overpotential for High Efficiency Photoelectric Converting CO2 to Methanol, Appl. Catal. B-Environ., 2014,9, 156-157, 134-140. IF=10.212

11. Zhongxue Yang, Jinfeng Xu1, Chenxiao Wu, Hua Jing, Peiqiang Li* , Hongzong Yin*, New Insight into Photoelectric Converting CO2 to CH3OH on the One-dimensional Ribbon CoPc Enhanced Fe2O3 NTs, Appl. Catal. B-Environ., 2014,9, 156-157, 249-256. IF=10.212

12. Peiqiang Li*, Hua Jing, Jinfeng Xu, Jun Zhang, Fusui Lu*. High Efficiency Synergistic Convension CO2 to Methanol Using Cu2O Double Layers Sphere Modified Fe2O3 NTs, Nanoscale, 2014,6, 11380-11386. IF=7.713