Vig Asger Laurberg, Haldrup Kristoffer, Enevoldsen Nikolaj, Thilsted Anil Haraksingh, Eriksen Johan, Kristensen Anders, Feidenhans'l Robert, Nielsen Martin Meedom
Department of Micro and Nanotechnology, DTU Nanotech, Technical University of Denmark, Building 345east, DK-2800 Kongens Lyngby, Denmark.
Rev Sci Instrum. 2009 Nov;80(11):115114. doi: 10.1063/1.3262498.
We propose and describe a microfluidic system for high intensity x-ray measurements. The required open access to a microfluidic channel is provided by an out-of-plane capillary burst valve (CBV). The functionality of the out-of-plane CBV is characterized with respect to the diameter of the windowless access hole, ranging from 10 to 130 microm. Maximum driving pressures from 22 to 280 mbar corresponding to refresh rates of the exposed sample from 300 Hz to 54 kHz is demonstrated. The microfluidic system is tested at beamline ID09b at the ESRF synchrotron radiation facility in Grenoble, and x-ray scattering measurements are shown to be feasible and to require only very limited amounts of sample, <1 ml/h of measurements without recapturing of sample. With small adjustments of the present chip design, scattering angles up to 30 degrees can be achieved without shadowing effects and integration on-chip mixing and spectroscopy appears straightforward.
我们提出并描述了一种用于高强度X射线测量的微流控系统。平面外毛细管破裂阀(CBV)提供了微流控通道所需的开放通道。平面外CBV的功能根据无窗接入孔的直径进行了表征,范围从10到130微米。展示了对应于从300 Hz到54 kHz的曝光样品刷新率的22到280毫巴的最大驱动压力。该微流控系统在位于格勒诺布尔的欧洲同步辐射装置(ESRF)的ID09b光束线上进行了测试,并且X射线散射测量被证明是可行的,并且仅需要非常少量的样品,测量时每小时小于1毫升且无需重新捕获样品。通过对当前芯片设计进行小的调整,可以实现高达30度的散射角而无阴影效应,并且芯片上的混合和光谱集成看起来很简单。