泰山学者

泰山学者青年专家-赖建平

发布者: 审核人: 发布时间:2020年04月22日 14:01


工作和教育经历:

2019/03 - 至今,青岛科技大学,化学与分子工程学院,特聘教授,泰山学者青年专家

2017/04 - 2019/03,北京大学,工学院,博士后,合作导师:郭少军研究员

2011/09 - 2017/01,中国科学院长春应用化学研究所,分析化学,博士,导师:徐国宝研究员

2007/09 - 2011/07,福州大学,化学基地班,学士

研究方向:

主要从事纳米材料的可控合成及其在能源电催化领域的应用。近五年发表SCI论文50余篇,其中以第一作者和通讯作者身份在 ChemJoule Energy Environ. Sci.2)、 Adv. Mater. ACS Cent. Sci. Adv. Energy Mater. Nano Today Appl. Catal. B: Environ.2)、 Small J. Mater. Chem. A3)等国际著名期刊上发表SCI论文19

近五年代表性论文:

[1]        Zhao, H., Zhang, D., Wang, Z., Han, Y., Sun, X., Li, H., Xueke, W., Pan, Y., Qin, Y., Lin, S., Xu, Z., Lai, J.*, Wang, L.* High-performance nitrogen electroreduction at low overpotential by introducing Pb to Pd nanosponges. Appl. Catal. B: Environ. 265, 118481 (2020). (IF: 14.229)

[2]        Wu, X., Wang, Z., Han, Y., Zhang, D., Wang, M., Li, H., Zhao, H., Pan, Y., Lai, J.*, Wang, L.* Chemical coupled NiCoS/C nanocages as efficient electrocatalyst for nitrogen reduction reaction. J. Mater. Chem. A 8, 543-547 (2020). (IF: 10.733)

[3]        Li, H., Pan, Y., Zhang, D., Han, Y., Wang, Z., Qin, Y., Lin, S., Wu, X., Zhao, H., Lai, J.*, Huang, B.*, Wang, L.* Surface oxygen-mediated ultrathin PtRuM (Ni, Fe and Co) nanowires boosting methanol oxidation reaction. J. Mater. Chem. A 8, 2323-2330 (2020). (IF: 10.733)

[4]        Zhang, D., Zhao, H., Huang, B., Li, B., Li, H., Han, Y., Wang, Z., Wu, X., Pan, Y., Sun, Y., Sun, X., Lai, J.*, Wang, L.* Advanced ultrathin RuPdM (M = Ni, Co, Fe) nanosheets electrocatalyst boosts hydrogen evolution. ACS Cent. Sci. 5, 1991-1997 (2019). (IF: 12.837)

[5]        Lai, J., Huang, B., Chao, Y., Chen, X., Guo, S. Strongly coupled nickel–cobalt nitrides/carbon hybrid nanocages with Pt-Like activity for hydrogen evolution catalysis. Adv. Mater. 30, 1805541 (2019). (IF: 25.809)

[6]        Lai, J., Lin, F., Tang, Y., Zhou, P., Chao, Y., Zhang, Y., Guo, S. Efficient bifunctional polyalcohol oxidation and oxygen reduction electrocatalysts enabled by ultrathin PtPdM (M = Ni, Fe, Co) nanosheets. Adv. Energy Mater. 9, 1800684 (2019). (IF: 24.884)

[7]        Lai, J., Huang, B., Tang, Y., Lin, F., Zhou, P., Chen, X., Sun, Y., Lv, F., Guo, S. Barrier-free interface electron transfer on PtFe-Fe2C janus-like nanoparticles boosts oxygen catalysis. Chem 4, 1153-1166 (2018). (IF: 18.205)

[8]        Lai, J., Nsabimana, A., Luque, R., Xu, G. 3D porous carbonaceous electrodes for electrocatalytic applications. Joule 2, 76-93 (2018).

[9]        Zhou, P., Lai, J., Tang, Y., Chao, Y., Lin, F., Guo, S. Amorphous FeCoPOx nanowires coupled to g-C3N4 nanosheets with enhanced interfacial electronic transfer for boosting photocatalytic hydrogen production. Appl. Catal. B: Environ. 238, 161-167 (2018). (IF: 14.229)

[10]       Lai, J., Guo, S. Design of ultrathin Pt-based multimetallic nanostructures for efficient oxygen reduction electrocatalysis. Small 13, 1702156 (2017). (IF: 10.856)

[11]       Lai, J., Li, S., Wu, F., Saqib, M., Luque, R., Xu, G. Unprecedented metal-Free 3D Porous Carbonaceous Electrodes for Full Water Splitting. Energy Environ. Sci. 9, 1210-1214 (2016). (前封面论文) (IF: 33.25)

[12]       Li, S., Lai, J., Luque, R., Xu, G. Designed multimetallic Pd nanosponges with enhanced electrocatalytic activity for ethylene glycol and glycerol oxidation. Energy Environ. Sci. 9, 3097-3102 (2016). (IF: 33.25)

[13]       Lai, J., Niu, W., Li, S., Wu, F., Luque, R., Xu, G. Concave and duck web-like platinum nanopentagon with enhanced electrocatalytic properties for formic acid oxidation. J. Mater. Chem. A 4, 807-812 (2016). (IF: 10.733)

[14]       Lai, J., Niu, W., Luque, R., Xu, G. Solvothermal synthesis of metal nanocrystals and their applications. Nano Today 10, 240-267 (2015). (IF: 16.582)