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发表文章

责编: | 发布日期:2019-12-26| 阅读次数:39

 

(1)    Zhang, C.; Li, P.; Cao, B., Electrospun Microfibrous Membranes Based on PIM-1/POSS with High Oil Wettability for Separation of Oil-Water Mixtures and Cleanup of Oil Soluble Contaminants. Ind. Eng. Chem. Res. 201554, 8772-8781.

(2)    Yin, X.; Cao, B.; Jiang, M.; Pan, K., Preparation of an ion recognition membrane by grafting a block polymer brush onto the membrane surface. Beijing Huagong Daxue Xuebao, Ziran Kexueban. 201542, 69-73.

(3)    Xu, T.; Meng, Q.; Shen, T.; Cao, B., Facile synthesis of submillimeter sized graphene oxide by a novel method. RSC Adv. 20155, 73737-73741.

(4)    Wang, J.; Song, K.; Cao, B.; Li, L.; Pan, K., The influence of polyamic acid molecular weight on the membrane structure and performance of polyimide solvent-resistant nanofiltration. J. Chem. Technol. Biotechnol. 2015, Ahead of Print.

(5)    Wang, J.; Jia, P.; Pan, K.; Cao, B., Functionalization of polyacrylonitrile nanofiber mat via surface-initiated atom transfer radical polymerization for copper ions removal from aqueous solution. Desalin. Water Treat. 201554, 2856-2867.

(6)    Tian, G.; Liu, L.; Meng, Q.; Cao, B., Facile synthesis of laminated graphene for advanced supercapacitor electrode material via simultaneous reduction and N-doping. J. Power Sources. 2015274, 851-861.

(7)    Pan, K.; Li, H.; Liang, B.; Qi, G.; Cao, B., Synthesis of well-defined responsive membranes with fixable solvent responsiveness. Polym. Int. 201564, 138-145.

(8)    Pan, K.; Cao, B.; Xu, J.; Luo, C.: Preparation method of high-flux polyimide nanofiltration membrane. Beijing University of Chemical Technology, Peop. Rep. China . 2015; pp 7pp.

(9)    Meng, Q.; Cao, B.; Meng, C.: Ion-exchange membrane composite multipolar capacitive adsorption desalter. Beijing University of Chemical Technology, Peop. Rep. China . 2015; pp 8pp.

(10)  Luo, C.; Wang, J.; Jia, P.; Liu, Y.; An, J.; Cao, B.; Pan, K., Hierarchically structured polyacrylonitrile nanofiber mat as highly efficient lead adsorbent for water treatment. Chem. Eng. J. (Amsterdam, Neth.). 2015262, 775-784.

(11)  Liu, Y.; Cao, B.; Jia, P.; An, J.; Luo, C.; Ma, L.; Chang, J.; Pan, K., Layer-by-Layer Surface Molecular Imprinting on Polyacrylonitrile Nanofiber Mats. J. Phys. Chem. A. 2015119, 6661-6667.

(12)  Liu, L.; Wu, X.; Zhang, M.; Meng, Q.; Cao, B., Effect of Catalyst on Electrochemical Synthesis of 2, 2'-Dichlorohydrazobenzene from o-Chloronitrobenzene on a Titanium Electrode. J. Electrochem. Soc. 2015162, G69-G74.

(13)  Liu, L.; Liao, L.; Meng, Q.; Cao, B., High performance graphene composite microsphere electrodes for capacitive deionisation. Carbon. 201590, 75-84.

(14)  Liang, B.; Zhan, W.; Qi, G.; Lin, S.; Nan, Q.; Liu, Y.; Cao, B.; Pan, K., High performance graphene oxide/polyacrylonitrile composite pervaporation membranes for desalination applications. J. Mater. Chem. A. 20153, 5140-5147.

(15)  Khalid, B.; Meng, Q. H.; Cao, B., A non-enzymatic thermally reduced Cu nanoparticle based graphene-resorcinol benzaldehyde glucose sensor. Mater. Res. Innovations. 201519, 91-96.

(16)  Jia, P.; Qu, J.; Cao, B.; Liu, Y.; Luo, C.; An, J.; Pan, K., Controlled growth of polyhedral and plate-like Ag nanocrystals on a nanofiber mat as a SERS substrate. Analyst (Cambridge, U. K.). 2015140, 5190-5197.

 (17)  Ling Liu, Guiying Tian, Rui Ma, Gang Pan, Wenbin You, and Qinghan MengPreparation and Electrosorption Performance of Graphene Xerogel, ECS Solid State Letters(6) M9-M11 (2015)