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成都理工大学材料与化学化工学院导师教师师资介绍简介-李小可

本站小编 Free考研考试/2021-09-14


博士 研究员(校聘)
单位:材料与化学化工学院化工与制药系
电话:
E-mail:xiaokeli319@126.com
基本情况:
  李小可,男,1990年3月生,四川攀枝花人,博士研究生。2012年毕业于西南石油大学,获工学学士学位,同年考入西南石油大学化学工程与技术专业硕博连读,师从邹长军教授;2016年8月-2017年3月在美国纽约城市大学博士联合培养,师从Jing Fan教授;2017年6月毕业于西南石油大学化学工程与技术专业获工学博士学位。2017年6月-2019年2月任职于中国科学院成都有机化学有限公司,担任碳纳米管应用部门研发主管。2019年3月加入成都理工大学材料与化学化工学院,从事教学和科研工作。成都理工大学“珠峰引才计划”B类学术骨干人才,校聘研究员专业技术职务。目前主要从事新型纳米流体的制备及性能、纳米流体的应用等领域的研究。截止目前共发表SCI论文及中文核心期刊论文二十余篇,总他引次数超过300次,H指数为12。其中第一作者或通讯作者身份发表SCI论文14篇,并有多篇论文入选ESI热点论文和高被引论文。
讲授课程:
本科生:化工原理、化工仪表及自动化
研究生:高等分离工程、精细化工技术
主要科研项目:
1.成都理工大学科研启动基金,30万元,主持;
2.中科院西部之光人才基金,15万元,主持(结题)。
研究领域:化工传热传质
研究方向:纳米流体;太阳能光热利用
主要学术论文:
(1)Xiaoke Li* et al. The stability, optical properties and solar-thermal conversion performance of SiC-MWCNTs hybrid nanofluids for the direct absorption solar collector (DASC) application, Solar Energy Materials and Solar Cells, 2020, 206: 110323 (ESI高被引论文)
(2)Xiaoke Li* et al. The thermophysical properties and enhanced heat transfer performance of SiC-MWCNTs hybrid nanofluids for car radiator system. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2021,612: 125968
(3)Xiaoke Li* et al. An experimental study on β-cyclodextrin modified carbon nanotubes nanofluids for the direct absorption solar collector (DASC): Specific heat capacity and photo-thermal conversion performance, Solar Energy Materials and Solar Cells, 2020, 204:110240
(4)Xiaoke Li*, Changjun Zou, Wenjing Chen, Xinyu Lei, Experimental investigation of β-cyclodextrin modified carbon nanotubes nanofluids for solar energy systems: Stability,optical properties and thermal conductivity, Solar Energy Materials & Solar Cells 157 (2016) 572-579
(5)Xiaoke Li, Changjun Zou, Taiyang Wang, Xinyu Lei, Rheological behavior of ethylene glycol-based SiC nanofluids, International Journal of Heat and Mass Transfer 2015,84,925-930. (一区TOP,ESI高被引文)
(6)Xiaoke Li, Changjun Zou, Xinyu Lei, Wenliang Li, Stability and enhanced thermal conductivity of ethylene glycol-based SiC nanofluids, International Journal of Heat and Mass Transfer 2015, 89,613-619. (一区TOP,ESI高被引文)
(7)Xiaoke Li, Ying Xiong, Dajun Chen, Changjun Zou, Utilization of nanoparticle-stabilized foam for gas well deliquification, Colloids and Surfaces A: Physicochemical and Engineering Aspects 2015, 482, 378-385
(8)Xiaoke Li, Changjun Zou, Chanchan Cui, Synthesis and characterization of a novel β-cyclodextrin modified cationic polyacrylamide and its application for enhancing oil recovery, Starch-St?rke 2015, 67, 673-682.
(9)Xiaoke Li, Changjun Zou, Lu Zhou, Aihua Qi, Experimental study on the thermo-physical properties of diathermic oil based SiC nanofluids for high temperature applications, International Journal of Heat and Mass Transfer 97 (2016) 631-637. (一区TOP)
(10)Xiaoke Li, Changjun Zou, Thermo-physical properties of water and ethylene glycol mixture based SiC nanofluids: An experimental investigation, International Journal of Heat and Mass Transfer 101 (2016) 412-417. (一区TOP)
(11)Xiaoke Li*, Changjun Zou, Aihua Qi, Experimental study on the thermo-physical properties of car engine coolant (water/ethylene glycol mixture type) based SiC nanofluids, International Communications in Heat and Mass Transfer 77 (2016) 159-164.
(12)李小可, 熊颖, 陈大钧. 川渝地区气井井底积液清除工艺技术研究[J]. 石油天然气学报, 2013, 35(1):154-157.
(13)李小可,陈大钧.油井水泥复合型自愈合剂的研制和评价[J]. 科学技术与工程, 2013, 13(28):8419-8423.
(14)李小可, 熊颖, 陈大钧. 一种新型抗高温酸化缓蚀剂的制备与性能评价[J]. 应用化工, 2014(6):1105-1107.
(15)陈大钧, 李小可, 熊颖,等. 防H_2S腐蚀的硫脲基咪唑啉缓蚀剂研究[J]. 油田化学, 2014, 31(1).
(16)雷鑫宇, 李小可, 于小荣,等. 固井自修复水泥性能评价方法研究[J]. 精细石油化工进展, 2015, 16(2):9-11.
(17)Wenjing Chen, Changjun Zou, Xiaoke Li, HaoLiang. Application of recoverable carbon nanotube nanofluids in solar desalination system: An experimental investigation, Desalination, 451:92-101. (一区TOP)
(18)Baojie Wei, Changjun Zou, Xiaoke Li, Experimental investigation on stability and thermal conductivity of diathermic oil based TiO2 nanofluids, International Journal of Heat and Mass Transfer 104 (2017) 537-543;
(19)Wenjing Li, Changjun Zou, Xiaoke Li, Thermo-physical properties of waste cooking oil-based nanofluids, Applied Thermal Engineering 112 (2017) 784-792;

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