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天津大学 精密测试技术及仪器 国家重点实验室 天津,300072
收稿日期:2012-06-14,
修回日期:2012-07-17,
纸质出版日期:2012-10-10
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栗大超, 姬永婕, 于海霞, 梁文帅, 徐可欣. 基于AIBN材料的微流体驱动用微型正压源[J]. 光学精密工程, 2012,20(10): 2245-2250
LI Da-chao, JI Yong-jie, YU Hai-xia, LIANG Wen-shuai, Xu Ke-xin. Micro positive pressure generator based on AIBN for driving micro fluid[J]. Editorial Office of Optics and Precision Engineering, 2012,20(10): 2245-2250
栗大超, 姬永婕, 于海霞, 梁文帅, 徐可欣. 基于AIBN材料的微流体驱动用微型正压源[J]. 光学精密工程, 2012,20(10): 2245-2250 DOI: 10.3788/OPE.20122010.2245.
LI Da-chao, JI Yong-jie, YU Hai-xia, LIANG Wen-shuai, Xu Ke-xin. Micro positive pressure generator based on AIBN for driving micro fluid[J]. Editorial Office of Optics and Precision Engineering, 2012,20(10): 2245-2250 DOI: 10.3788/OPE.20122010.2245.
针对本课题组早些时候研制的用于微量组织液透皮抽取的微流控芯片
研究了一种基于偶氮双异丁腈(azobisisobutyronitrile
AIBN)热分解产生气体的微型正压源
用于为微流控芯片中微量组织液的收集和输运提供驱动力。将AIBN固定到微型加热器上
微型加热器加热AIBN至70℃即可产生一定的正压力。实验结果表明
设计的微型正压源压力可控、易于制造、体积小
8.7 mg的AIBN在900 mA加热电流下可产生182 kPa的压力
满足对微流控芯片中组织液透皮抽取所需的驱动力。
In order to provide the driving force for the collection and transport of the micro liquid in a microfluidic chip developed by our research group in earlier research
this paper presents a micro positive pressure generator based on the released gas by thermal decomposition of azobisisobutyronitrile (AIBN). The AIBN is fixed to a micro-heater and heated to 70℃ to produce a certain amount of positive pressure. Experimental measurements show that this micro positive pressure generator can obtain 182 kPa pressure with heating 8.7 mg of AIBN by a heating current of 900 mA. The designed micro positive pressure generator is a smaller size
pressure controllable and easy to produce
and obtained pressure can satisfy the requirements of transdermal interstitial fluid (ISF) extraction.
DAVID C K. A review of continuous glucose monitoring technology [J]. Diabetes Technology & Therapeutics, 2005,7(5):770-775.[2] BURDICK J, CHASE P, FAUPEL M, et al..Real-time glucose sensing using transdermal fluid under continuous vacuum pressure in children with type 1 diabetes [J]. Diabetes Technology & Therapeutics, 2005, 7(3):448-455.[3] MARUO K, TSURUGI M, TAMURA M, et al..In vivo noninvasive measurement of blood glucose by near-infrared diffuse-reflectance spectroscopy [J]. Appl. Spectrosc.,2003, 57(10):1236-1244.[4] KAMHOLZ A E, WEIGL B H, FINLAYSON B A, et al..Quantitative analysis of molecular interaction in a microfluidic channel: The T-sensor [J]. Analytical Chemistry, 1999,71(23):5340-5347.[5] KAMHOLZ A E, YAGER P. Theoretical analysis of molecular diffusion in pressure-driven laminar flow in microfluidic channels [J].Biophysical Journal,2001,80(1):155-160.[6] MUNTZ E P, SHIFLETT G R, VARGO S E. Microscale thermal-transpiration gas pump[J]. NASA Tech. Brief, 2003, 27(2):72-73.[7] KOOPS H, Proposal of a miniaturized orbitron pump for MEMS applications[J].SPIE, 2005, 5838:38-42.[8] KOO K, JEONG M, PARK S, et al.. Novel valveless micro suction pump using a solid chemical propellant[J]. IFMBE Proceedings, 2006, 14 (1):310-313.[9] KOO K, PARK S, BAN J, et al.. A novel fluid suction tool for capsular endoscope.Transducers & Eurosensors 07, the 14th International Conference on Solid-State Sensors, Actuators and Microsystems, 2007, 1: 1335-1336.[10] MUKERJEE E V, WALLACE A P, YAN K Y, et al.. Vaporizing liquid microthruster[J]. Sens. Actuators, 2000, 83:231-236.[11] TEASDALE D, MILANVIC V, CHANG P, et al.. Microrockets for smart dust[J]. Smart Mater. Struct, 2001, 10(6):1145-1155.[12] HONG C C, MURUGESAN S, KIM S, et al.. A functional on-chip pressure generator using solid chemical propellant for disposable lab-on-a-chip[J]. Lab Chip, 2003,3:281-286.[13] TABKA M T, CHENAL J M, WIDMAIER J M. Effect of stannous octoate on the thermal decomposition of 2,2'-azobis(isobutyronitrile) [J]. Polymer Int.,2000,49(4):412-416.[14] MORRIS R E, MERA A E, BRADY R F, et al.. Development of a model system to study fuel autoxidation in supercritical media: decomposition kinetics of 2,2'-azobis(isobutyronitrile) in supercritical carbon dioxide [J].Fuel, 2000, 79, 1101-1107.
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