Chmela Emil, Blom Marko T, Gardeniers Han J G E, van den Berg Albert, Tijssen Robert
Department of Chemical Engineering, University of Amsterdam, Nieuwe Achtergracht 166, 1018 WV, Amsterdam, The Netherlands.
Lab Chip. 2002 Nov;2(4):235-41. doi: 10.1039/b206932f. Epub 2002 Oct 15.
A pressure-actuated on-chip injection system has been developed that is compatible with shallow microchannels with a very large aspect ratio, i.e. 1 microm deep and up to 1000 microm wide. Such channels offer potential advantages in the miniaturisation of liquid chromatography and other separation methods as they allow high loadability and low sample dispersion at the same time. Computational fluid dynamics simulations were performed to predict the flow profiles and the transport of a sample in the system and to justify the injection principle. Based on these simulations, a prototype integrated into a chip for hydrodynamic chromatography has been realised and tested experimentally. The performance of the device is satisfactory and the results are in qualitative agreement with the numerical models.
已开发出一种压力驱动的片上注射系统,它与具有非常大纵横比的浅微通道兼容,即深度为1微米,宽度可达1000微米。这种通道在液相色谱和其他分离方法的小型化方面具有潜在优势,因为它们同时允许高负载能力和低样品分散性。进行了计算流体动力学模拟,以预测系统中的流动剖面和样品传输,并验证注射原理。基于这些模拟,已实现了一个集成到芯片中的用于液力色谱的原型并进行了实验测试。该装置的性能令人满意,结果与数值模型在定性上一致。