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碳纳米材料及储能代表工作
Cui CJ, Qian WZ*, Xiang L, Wei F* et al., Highly Electroconductive Mesoporous Graphene Nanofibers and Their Capacitance Performance at 4 V . J Am Chem Soc. 2014, 136,2256. ESI高被引文章.
Zhang RF, Zhang YY*, Zhang Q, Qian WZ, Wei F*.Superlubricity in centimetres-long double-walled carbon nanotubes under ambient conditions. Nature Nanotechn, 2013, 8,912。封面文章.
Wen Q, Qian WZ*, Nie JQ, Cao AY, Wei F*. et al. 100 mm long, Semiconducting, Triple-walled Carbon Nanotubes. Adv. Mater. 2010,22,1867.封面文章
Liu Y, Qian WZ*, Zhang Q, Cao AY, Li ZF, Zhou WP, Ma Y, Wei F. Hierarchical agglomerates of carbon nanotubes as high-pressure cushions. Nano Lett 2008,8,1323.
Xiang R, Luo GH, QianWZ*,Zhang Q, Wei F* et al. Encapsulation, compensation, and substitution of catalyst particles during continuous growth of carbon nanotubes. Adv. Mater. 2007, 19, 2360.
Kong CY, Qian WZ*, et al., Raising the performance of a 4 V supercapacitor based on an EMIBF4- single walled carbon nanotube nanofluid electrolyte, Chem Commun. 2013,49,10727.
Qian WZ*, Tian T, Guo CY, Wen Q, et al. Enhanced activation and decomposition of CH4 by the addition of C2H4 or C2H2 for hydrogen and carbon nanotube production. J. Phys. Chem. C 2008, 112,7588.
Yu YT, Cui CJ, Qian WZ*, Full capacitance potential of SWCNT electrode in ionic liquids at 4 V. J. Mater. Chem A, 2014,2,19897.
Qian WZ*, Wei F, Wang ZW, et al. What causes the carbon nanotubes collapse in a CVD process, J Chem Phys, 2003,118,878.
Cheng H, Qian WZ*, et al., Graphene-carbon nanotube hybrids as robust, rapid, reversible adsorbents for organics. Carbon 2017, 116,409.
3.分子筛合成及催化代表工作
Shen K, Qian WZ*, et al., Fabrication of c-Axis Oriented ZSM-5 Hollow Fibers Based on an in Situ Solid-Solid Transformation Mechanism, J Am Chem Soc, 2013,135,15322.
Zhang JG, Qian WZ*, etal., Increasing Para-xylene Selectivity in making aroamtics from methanol over a surface modified Zn/P/ZSM-5 catalyst. ACS Catal. 2015,5,2982.
Wang N, Qian WZ*, Wei F et al., Bayberry-like ZnO/MFI Zeolite as High Performance Methanol-to aromatics Catalyst. Chem Commun. 2016,52(10),2011,封面文章.
Shen K, Wang N, Qian WZ*, et al., Atmospheric pressure synthesis of nanosized ZSM-5 with enhanced catalytic performance for methanol to aromatics reaction. Catal Sci Techn. 2014,4,3840.
Hou YL, Wang N, Qian WZ*, Highly selective synthesis of large aromatic molecules with nano-zeolite: beyond the shape selectivity effect. RSC Adv., 2017, 7, 14309.
Wang N, Qian WZ*, Wei F. Fabrication and catalytic properties of three dimensional ordered zeolite arrays with interconnected micro-meso-macroporous structure. J Mater Chem A, 2016, 4,10834. 封面文章
4. 流化床强化工艺代表性工作
Su C, Qian WZ*, Xie Q, Wei F et al. Conversion of methanol with C5–C6 hydrocarbons into aromatics in a two-stage fluidized bed reactor. Catal Today 2016,264,63.
Wang T, Tang XP, Qian WZ*, Wei F. et al., Conversion of methanol to aromatics in fluidized bed reactor. Catal Today, 2014, 233,8.
Wei XB, Shi HB, Qian WZ,* Wei F*, et al., Gas-Phase Catalytic Hydrochlorination of Acetylene in a Two-Stage Fluidized-Bed Reactor. Ind Eng Chem Res, 2009,48,128.
Liu Y, Qian WZ*, Wei F, et al. Synthesis of High-Quality, Double-Walled Carbon Nanotubes in a Fluidized Bed Reactor. Chem Eng Techn. 2009,32,73.
Yong S, Qian WZ*, Wei F. et al., Highly selective synthesis of single-walled carbon nanotubes from methane in a coupled Downer-turbulent fluidized-bed reactor. J Energy Chem. 2013, 22,567.
Qian WZ?, Liu T, Wang ZW, Wei F, Li YD et al., Production of hydrogen and carbon nanotubes from methane decomposition in a two-stage fluidized bed reactor. Appl Catal A, 2014, 260,223. 国际埃尼奖提名
Diao SG, Qian WZ*, Luo GH, Wei F, Wang Y. Gaseous catalytic hydrogenation of nitrobenzene to aniline in a two-stage fluidized bed reactor. Appl Catal A, 2005, 286,30
Qian WZ, Wei F*, Wang ZW, et al., Production of carbon nanotube in a packed bed and a fluidized bed. AIChE J 2003, 49,619.