徐琴琴
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副教授
博士生导师
硕士生导师
- 性别:女
- 毕业院校:大连理工大学
- 学位:博士
- 所在单位:化工学院
- 学科:化工过程机械. 流体机械及工程. 安全科学与工程
- 办公地点:西部校区H315
- 联系方式:qinqinxu@dlut.edu.cn
- 电子邮箱:qinqinxu@dlut.edu.cn
访问量:
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[1] Zhu, Lei,牛硕磊.In situ growth of Ag nanoparticles on pristine graphene and their applications in conductive ink[J],Journal of Nanoparticle Research,2024,25(5)
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[2] 杨铭哲,王启搏.The Mechanism of Growing MoS2 via Sulfuration of Molybdenum Hexacarbonyl: First principles study[J],CHEMISTRYSELECT,8(14)
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[3] 王启搏,杨铭哲,韩振华.Vapor-Liquid-Solid Growth of Site-Controlled Monolayer MoS(2) Films Via Pressure-Induc ed Supercriti[J],ACS applied materials & interfaces,2024,15(13):17396-17405
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[4] 祁建磊,孙剑飞,周丹.An extraction-based facile method for measuring the solubility of organic solid compounds in supercr[J],Chemical Engineering Communications,2024,210(1):137-145
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[5] 李子乔,王启搏,韩振华,程通.Morphological evolution of MoxW1-xS2/MoS2 heterostructures modulated with a growth dynamic process b[J],CrystEngComm,2024,26(27):3694-3703
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[6] 王启搏,韩振华,程通.Reaction dynamics simulation of MoO2 cluster precursor with melting, deoxygenation and sulfuration f[J],APPLIED SURFACE SCIENCE,2024,669
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[7] 韩振华,王启搏,程通,焦东升.The effect of sulfuration reaction rates with sulphur concentration gradient dependence on the growt[J],NANOSCALE,2024,16(30):14402-14417
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[8] Zhou, Dan,王志刚.液相剥离自组装法制备AgNPs / MoS2 复合SERS 基底及其性能[J],Materials Reports,2024,38(16)
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[9] 牛硕磊,张伟健.缠绕管式固定床反应器压降模拟与实验研究[J],化学工程,2024,52(08):49-54
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[10] 王启搏,杨铭哲.Experimental and theoretical investigation on pre-deposited precursor as growth sites for monolayer [J],Chemical Engineering Science,2024,302
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[11] 徐琴琴.Direct Growth of Higly Dispersed MnCl24H2O Nanostructures with Different Morphologies on Grapheme in[A],The 4th China-France Workshops on Supercritical Fluids,2022
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[12] ligen.Effect of different co-solvents on solubility of ILs [Emim]Ac, [Bmim][NTf2] in scCO(2)[J],JOURNAL OF MOLECULAR LIQUIDS,2022,284:102-109
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[13] Liu, Yi-Fan.Effects of operating parameters and ionic liquid properties on fabrication of supported ionic liqu[J],JOURNAL OF MEMBRANE SCIENCE,2022,545:176-184
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[14] Qiao, Guoyue.Efficient synthesis of sub-5 nm Ag nanoparticles by the desorption effect of supercritical CO(2)in[J],NANOTECHNOLOGY,2022,31(37)
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[15] Xiang, Hao-Ming.Enhancement of a Double Cosolvent on Solubility of [Bmim][Ac] and [Bmim][NTf2] in Supercritical CO[J],JOURNAL OF CHEMICAL AND ENGINEERING DATA,2022,65(4):1655-1662
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[16] Zhang, Qiaozhi.Enhanced Enzymatic Hydrolysis of Sorghum Stalk by Supercritical Carbon Dioxide and Ultrasonic Pret[J],APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY,2022,188(1):101-111
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[17] 徐琴琴.Enhancing enzymatic hydrolysis of corn cob, corn stover and sorghum stalk by dilute aqueous ammoni[J],INDUSTRIAL CROPS AND PRODUCTS,2022,109:220-226
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[18] Zhao, Meng-Jiao.Enhancing enzyme hydrolysis of Sorghum stalk by CO2-pressurized liquid hot water pretreatment[J],Environmental Progress Sustainable Energy,2022,36(1):208-213
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[19] 徐琴琴.Exfoliation of graphite in CO2 expanded organic solvents combined with low speed shear mixing[J],炭素,2022,135:180-186
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[20] 银建中.Experiments and numerical simulations of supercritical fluid extraction for Hippophae rhamnoides L[J],INDUSTRIAL ENGINEERING CHEMISTRY RESEARCH,2022,44(19):7420-7427