Reaction kinetics determination based on microfluidic technology

被引:7
|
作者
Zifei Yan [1 ]
Jiaxin Tian [1 ]
Chencan Du [1 ]
Jian Deng [1 ]
Guangsheng Luo [1 ]
机构
[1] The State Key Lab of Chemical Engineering, Department of Chemical Engineering, Tsinghua University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
O643.1 [化学动力学];
学科分类号
摘要
Microfluidic technology has been successfully applied to determine the reaction kinetics relying on its great characteristics including narrow residence time distribution,fast mixing,high mass and heat transfer rates and very low consumption of materials.In this review,the recent progresses about the reaction kinetics measured in microreactors are comprehensively organized,and the kinetic modeling thoughts,determination methods and essential kinetic regularities contained in these studies are summarized according to the reaction types involving nitration,oxidation,hydrogenation,photochemical reaction,polymerization and other reactions.Besides,the significant advances in the innovation of microplatform are also covered,The novel reactor configuration methods were established mainly to achieve rapid and efficient data collection and analysis.Finally,the advantages of microfluidic technology for the kinetic measurement are summarized,and a perspective for the future development is provided.
引用
收藏
页码:49 / 72
页数:24
相关论文
共 50 条
  • [1] Reaction kinetics determination based on microfluidic technology
    Yan, Zifei
    Tian, Jiaxin
    Du, Chencan
    Deng, Jian
    Luo, Guangsheng
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2022, 41 : 49 - 72
  • [2] Rapid Determination of Reaction Kinetics with an Automated Microfluidic System
    McMullen, Jonathan P.
    Jensen, Klavs F.
    ORGANIC PROCESS RESEARCH & DEVELOPMENT, 2011, 15 (02) : 398 - 407
  • [3] Microfluidic-based in-situ determination for reaction kinetics of hydrogen peroxide decomposition
    Qiu, Junjie
    Tang, Weiqiang
    Bao, Bo
    Zhao, Shuangliang
    CHEMICAL ENGINEERING JOURNAL, 2021, 424
  • [4] Microfluidic-based in-situ determination for reaction kinetics of hydrogen peroxide decomposition
    Qiu, Junjie
    Tang, Weiqiang
    Bao, Bo
    Zhao, Shuangliang
    Chemical Engineering Journal, 2021, 424
  • [5] Technology and application of the LTCC-based microfluidic module for urea determination
    Malecha, Karol
    Remiszewska, Elzbieta
    Pijanowska, Dorota G.
    MICROELECTRONICS INTERNATIONAL, 2015, 32 (03) : 126 - 132
  • [6] Simulation of biochemical reaction kinetics in microfluidic systems
    Makhijani, VB
    Raghavan, J
    Przekwas, A
    Przekwas, A
    MICROREACTION TECHNOLOGY: INDUSTRIAL PROSPECTS, 2000, : 441 - 450
  • [7] A Stochastic Model for Nucleation Kinetics Determination in Droplet-Based Microfluidic Systems
    Goh, Limay
    Chen, Kejia
    Bhamidi, Venkateswarlu
    He, Guangwen
    Kee, Nicholas C. S.
    Kenis, Paul J. A.
    Zukoski, Charles F., III
    Braatz, Richard D.
    CRYSTAL GROWTH & DESIGN, 2010, 10 (06) : 2515 - 2521
  • [8] Kinetics of Multicomponent Polymerization Reaction Studied in a Microfluidic Format
    Voicu, Dan
    Scholl, Clement
    Li, Wei
    Jagadeesan, Dinesh
    Nasimova, Irina
    Greener, Jesse
    Kumacheva, Eugenia
    MACROMOLECULES, 2012, 45 (11) : 4469 - 4475
  • [9] Diffusion-reaction kinetics of microfluidic amperometric biosensors
    Li, Hui
    Lu, Yi
    Wong, Pak Kin
    LAB ON A CHIP, 2018, 18 (20) : 3086 - 3089
  • [10] Spectrophotometric determination of dopamine in microliter scale using microfluidic system based on polymeric technology
    Maminski, M
    Olejniczak, M
    Chudy, M
    Dybko, A
    Brzózka, Z
    ANALYTICA CHIMICA ACTA, 2005, 540 (01) : 153 - 157