首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Microfluidic devices obtained by thermal toner transferring on glass substrate.
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Microfluidic devices obtained by thermal toner transferring on glass substrate.

机译:通过热色调剂在玻璃基板上转印而获得的微流体装置。

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摘要

A new process for the manufacture of microfluidic devices based on deposition of laser-printing toner on glass substrates is described. It is an alternative method to the toner on polyester film (toner-polyester) one, previously introduced. Commercial laser printers cannot print directly on glass, thus the toner must first be printed on a special paper and then transferred by heating under pressure to the glass surface. Although this procedure is more complex than the toner-polyester one, it can be repeated several times, yielding multiple toner layers. Even without special alignment equipment, up to four layers could be satisfactorily piled up. Characterization tests revealed that the toner-glass devices have similar behavior as toner-polyester ones regarding the toner layer porosity. The main advantages of the toner-glass technology are improved mechanical stability, possibility of multiple toner layers, augmented electroosmotic flow (EOF), and improved heat transfer. On the other hand, toner adhesion to glass is weaker than to polyester, which limits the device lifetime and usable liquid media. The measured EOF mobility (3.5x10(-4) cm(2).V(-1).s(-1) for pH 7) suggests that it is mainly determined by the glass surface, being little influenced by the toner walls. Microchip electrophoresis with contactless conductivity detection and photometric detection were implemented using toner-glass devices.
机译:描述了一种基于在玻璃基板上沉积激光打印色粉的微流控设备制造的新工艺。它是先前介绍的聚酯薄膜(墨粉-聚酯)上的碳粉替代方法。商用激光打印机无法在玻璃上直接打印,因此必须先将碳粉打印在特殊纸张上,然后通过加压加热将其转移到玻璃表面。尽管此过程比调色剂-聚酯过程更复杂,但可以重复几次,得到多个调色剂层。即使没有特殊的对准设备,也可以令人满意地堆积多达四层。表征测试表明,关于调色剂层的孔隙率,调色剂玻璃装置具有与调色剂聚酯装置相似的性能。碳粉玻璃技术的主要优点是提高了机械稳定性,增加了多个碳粉层的可能性,增强了电渗流(EOF)并改善了热传递。另一方面,墨粉对玻璃的粘附力比对聚酯的粘附力弱,这限制了设备寿命和可用的液体介质。测得的EOF迁移率(对于pH 7为3.5x10(-4)cm(2).V(-1).s(-1))表明,它主要由玻璃表面决定,几乎不受墨粉壁的影响。使用非接触式电导检测和光度检测的Microchip电泳是使用墨粉玻璃设备实现的。

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