微流控技术具有微型化、集成化的特点,且所合成产物形貌和单分散性好,已经越来越多的被应用于纳米材料的合成中.本文对微流体技术在纳米材料合成中的应用做了系统的阐述.对微流控芯片中流体流动、混合机理进行了介绍,并详细介绍了微流控芯片的制作工艺,展望了微流体技术在合成纳米材料中应用前景.
参考文献
[1] | Frances S. Ligler;Henry S. White.Nanomaterials in Analytical Chemistry[J].Analytical chemistry,201323(23):11161-11162. |
[2] | Xu, QB;Hashimoto, M;Dang, TT;Hoare, T;Kohane, DS;Whitesides, GM;Langer, R;Anderson, DG.Preparation of Monodisperse Biodegradable Polymer Microparticles Using a Microfluidic Flow-Focusing Device for Controlled Drug Delivery[J].Small,200913(13):1575-1581. |
[3] | David C. Duffy;J. Cooper McDonald;Olivier J. A. Schueller.Rapid Prototyping of Microfluidic Systems in Poly(dimethylsiloxane)[J].Analytical chemistry,199823(23):4974-4984. |
[4] | Vandaveer WR.;Pasas SA.;Martin RS.;Lunte SM..Recent developments in amperometric detection for microchip capillary electrophoresis [Review][J].Electrophoresis: The Official Journal of the International Electrophoresis Society,200221(21):3667-3677. |
[5] | Johnson TJ.;Ross D.;Locascio LE..Rapid microfluidic mixing[J].Analytical chemistry,20021(1):45-51. |
[6] | Olsen KG.;Ross DJ.;Tarlov MJ..Immobilization of DNA hydrogel plugs in microfluidic channels[J].Analytical chemistry,20026(6):1436-1441. |
[7] | Holger Becker;Laurie E. Locascio.Polymer microfluidic devices[J].Talanta: The International Journal of Pure and Applied Analytical Chemistry,20022(2):267-287. |
[8] | Tom McCreedy.Fabrication techniques and materials commonly used for the production of microreactors and micro total analytical systems[J].TrAC: Trends in Analytical Chemistry,20006(6):396-401. |
[9] | Liu BF.;Ozaki M.;Utsumi Y.;Hattori T.;Terabe S..Chemiluminescence detection for a microchip capillary electrophoresis system fabricated in poly(dimethylsiloxane)[J].Analytical chemistry,20031(1):36-41. |
[10] | Shin YS.;Cho K.;Lim SH.;Chung S.;Park SJ.;Chung C.;Han DC.;Chang JK..PDMS-based micro PCR chip with parylene coating[J].Journal of Micromechanics and Microengineering,20035(5):768-774. |
[11] | Takayama S;McDonald JC;Ostuni E;Liang MN;Kenis PJ;Ismagilov RF;Whitesides GM.Patterning cells and their environments using multiple laminar fluid flows in capillary networks.[J].Proceedings of the National Academy of Sciences of the United States of America,199910(10):5545-5548. |
[12] | Chabinyc ML;Chiu DT;McDonald JC;Stroock AD;Christian JF;Karger.An integrated fluorescence detection system in poly(dimethylsiloxane) for microfluidic applications[J].Analytical chemistry,200118(18):4491-4498. |
[13] | Xueqin Ren;Mark Bachman;Christopher Sims.Electroosmotic properties of microfluidic channels composed of poly(dimethylsiloxane)[J].Journal of Chromatography, Biomedical Applications,20012(2):117-125. |
[14] | Fu, Qiang;Ran, Guangjun;Xu, Weilin.A microfluidic-based controllable synthesis of rolled or rigid ultrathin gold nanoplates[J].RSC Advances,201547(47):37512-37516. |
[15] | Ran, Guangjun;Fu, Qiang;Xu, Weilin.Microfluidic-based controllable synthesis of Pt nanocatalysts supported on carbon for fuel cells[J].RSC Advances,201519(19):14740-14746. |
[16] | 杜晓光;关艳霞;王福仁;方肇伦.聚甲基丙烯酸甲酯微流控分析芯片的简易热压制作法[J].高等学校化学学报,2003(11):1962-1966. |
[17] | 王晓东;罗怡;刘冲;马骊群;温敏;王立鼎.塑料(PMMA)微流控芯片微通道热压成形工艺参数的确定[J].中国机械工程,2005(22):2061-2063. |
[18] | 宋满仓;刘莹;祝铁丽;杜立群;王敏杰;刘冲.塑料微流控芯片的注塑成型[J].纳米技术与精密工程,2011(4):329-334. |
[19] | Justin S. Mecomber;Douglas Hurd;Patrick A. Limbach.Enhanced machining of micron-scale features in microchip molding masters by CNC milling[J].International Journal of Machine Tools & Manufacture: Design, research and application,200512/13(12/13):1542-1550. |
[20] | Shu, Yun;Jiang, Peng;Pang, Dai-Wen;Zhang, Zhi-Ling.Droplet-based microreactor for synthesis of water-soluble Ag2S quantum dots[J].Nanotechnology,201527(27) |
[21] | Sia SK;Whitesides GM.Microfluidic devices fabricated in Poly(dimethylsiloxane) for biological studies.[J].Electrophoresis: The Official Journal of the International Electrophoresis Society,200321(21):3563-3576. |
[22] | Arata Aota;Kazuma Mawatari;Takehiko Kitamori.Parallel multiphase microflows: fundamental physics, stabilization methods and applications[J].Lab on a chip,200917(17):2470-2476. |
[23] | Tokeshi M;Kikutani Y;Hibara A;Sato K;Hisamoto H;Kitamori T.Chemical processing on microchips for analysis, synthesis, and bioassay.[J].Electrophoresis: The Official Journal of the International Electrophoresis Society,200321(21):3583-3594. |
[24] | Eggleton CD.;Stebe KJ.;Tsai TM..Tip streaming from a drop in the presence of surfactants - art. no. 048302[J].Physical review letters,20014(4):8302-0. |
[25] | Mengeaud V.;Josserand J.;Girault HH..Mixing processes in a zigzag microchannel: Finite element simulations and optical study[J].Analytical chemistry,200216(16):4279-4286. |
[26] | Yung-Chiang Chung;Yuh-Lih Hsu;Chun-Ping Jen;Ming-Chang Lu;Yu-Cheng Lin.Design of passive mixers utilizing microfluidic self-circulation in the mixing chamber[J].Lab on a chip,20041(1):70-77. |
[27] | Sudarsan AP;Ugaz VM.Fluid mixing in planar spiral microchannels[J].Lab on a chip,20061(1):74-82. |
[28] | Jackson WC.;Kuckuck F.;Edwards BS.;Mammoli A.;Gallegos CM.;Lopez GP. Buranda T.;Sklar LA..Mixing small volumes for continuous high-throughput flow cytometry: Performance of a mixing Y and peristaltic sample delivery[J].Cytometry,20023(3):183-191. |
[29] | Bessoth FG.;Manz A.;deMello AJ..Microstructure for efficient continuous flow mixing[J].Analytical Communications,19996(6):213-215. |
[30] | Yang Z.;Matsumoto M.;Maeda R.;Goto H..Active micromixer for microfluidic systems using lead-zirconate-titanate(PZT)-generated ultrasonic vibration[J].Electrophoresis: The Official Journal of the International Electrophoresis Society,20001(1):116-119. |
[31] | Masaki Togiso;Kaname Yoshida;Kiyoshi Yase;Toshimi Shimizu.One-dimensional organization of copper nanoparticles by chemical reduction of lipid-copper hybrid nanofibers[J].Chemical communications,200221(21):2492-2493. |
[32] | J. A. Eastman;S. U. S. Choi;S. Li;W. Yu;L. J. Thompson.Anomalously increased effective thermal conductivities of ethylene glycol-based nanofluids containing copper nanoparticles[J].Applied physics letters,20016(6):718-720. |
[33] | J.Wagner;T.Kirner;G.Mayer;J.Albert;J.M.Kohler.Generation of metal nanoparticles in a microchannel reactor[J].Chemical Engineering Journal,20041/3(1/3):251-260. |
[34] | Wagner J;Kohler JM.Continuous synthesis of gold nanoparticles in a microreactor[J].Nano letters,20054(4):685-691. |
[35] | Kohler JM;Wagner J;Albert J.Formation of isolated and clustered Au nanoparticles in the presence of polyelectrolyte molecules using a flow-through Si chip reactor[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,200519(19):1924-1930. |
[36] | Johann Boleininger;Andreas Kurz;Valerie Reuss.Microfluidic continuous flow synthesis of rod-shaped gold and silver nanocrystals[J].Physical chemistry chemical physics: PCCP,200633(33):3824-3827. |
[37] | Song YJ;Doomes EE;Prindle J;Tittsworth R;Hormes J;Kumar CSSR.Investigations into sulfobetaine-stabilized cu nanoparticle formation: Toward development of a microfluidic synthesis[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,200519(19):9330-9338. |
[38] | Visaveliya, Nikunjkumar;Lenke, Steffen;Koehler, J. Michael.Composite Sensor Particles for Tuned SERS Sensing: Microfluidic Synthesis, Properties and Applications[J].ACS applied materials & interfaces,201520(20):10742-10754. |
[39] | Wagner, J;Tshikhudo, TR;Koehler, JM.Microfluidic generation of metal nanoparticles by borohydride reduction[J].Chemical Engineering Journal,2008suppl.1(suppl.1):S104-S109. |
[40] | Hafermann, Lars;Koehler, J. Michael.Small gold nanoparticles formed by rapid photochemical flow-through synthesis using microfluid segment technique[J].Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology,20152(2) |
[41] | Cabrera, Flavio C.;Melo, Antonio F. A. A.;de Souza, Joao C. P.;Job, Aldo E.;Crespilho, Frank N..A flexible lab-on-a-chip for the synthesis and magnetic separation of magnetite decorated with gold nanoparticles[J].Lab on a chip,20158(8):1835-1841. |
[42] | Ben F.Cottam;Siva Krishnadasan;Andrew J.deMello.Accelerated synthesis of titanium oxide nanostructures using microfluidic chips[J].Lab on a chip,20072(2):167-169. |
[43] | Kota Shiba;Makoto Ogawa.Microfluidic syntheses of well-defined sub-micron nanoporous titania spherical particles[J].Chemical communications,200944(44):6851-6853. |
[44] | Saif A. Khan;Klavs F. Jensen.Microfluidic Synthesis of Titania Shells on Colloidal Silica[J].Advanced Materials,200718(18):2556-2560. |
[45] | Lan, W.;Li, S.;Xu, J.;Luo, G..Synthesis of titania-silica core-shell microspheres via a controlled interface reaction in a microfluidic device[J].Langmuir: The ACS Journal of Surfaces and Colloids,201121(21):13242-13247. |
[46] | Joshua B. Edel;Robin Fortt;John C. deMello;Andrew J. deMello.Microfluidic routes to the controlled production of nanoparticles[J].Chemical communications,200210(10):1136-1137. |
[47] | Dai, Jing;Yang, Xiaoyun;Hamon, Morgan;Kong, Lingzhao.Particle size controlled synthesis of CdS nanoparticles on a microfluidic chip[J].Chemical engineering journal,2015:385-390. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%