Hisamoto Hideaki, Yasuoka Midori, Terabe Shigeru
Graduate School of Material Science, University of Hyogo, 3-2-1 Kouto, Kamigori-cho, Ako-gun, Hyogo 678-1297 Japan.
Anal Chim Acta. 2006 Jan 18;556(1):164-70. doi: 10.1016/j.aca.2005.05.028. Epub 2005 Jun 9.
Multiple-ion-sensing functions are integrated on a capillary-assembled microchip (CAs-CHIP). Since the CAs-CHIPs are fabricated by embedding various chemically functionalized square capillaries onto a lattice PDMS channel plate having same channel dimensions as outer dimensions of square capillaries, integration of parallel multiple-ion-sensing is easily realized. Here, three ion-sensing capillaries are prepared and used for integrating these functions onto a single microchip. Ion-sensing square capillaries (sodium, potassium, calcium) are prepared by attaching ion-selective optode membranes to inner wall of capillaries, and are characterized in terms of response time, response range, and ion selectivity. Finally, fully characterized ion-sensing capillaries are embedded into PDMS channel plate in parallel to fabricate a multiple-ion-sensing chip. The CAs-CHIP-based strategy is promising for integrating multiple chemical sensing functions onto a single microchip.
多种离子传感功能集成在一个毛细管组装微芯片(CAs-CHIP)上。由于CAs-CHIP是通过将各种化学功能化的方形毛细管嵌入到具有与方形毛细管外部尺寸相同通道尺寸的晶格PDMS通道板上制造的,因此很容易实现并行多离子传感的集成。在此,制备了三根离子传感毛细管,并用于将这些功能集成到单个微芯片上。通过将离子选择性光极膜附着到毛细管内壁来制备离子传感方形毛细管(钠、钾、钙),并对其响应时间、响应范围和离子选择性进行表征。最后,将充分表征的离子传感毛细管并行嵌入PDMS通道板中,以制造多离子传感芯片。基于CAs-CHIP的策略有望将多种化学传感功能集成到单个微芯片上。