Effects of spatial gradients of electrical conductivity on chip-based sample injection processes
نویسندگان
چکیده
The precise control of the loaded and dispensed sample amount in crossing microchannels is key to the performance of many lab-on-a-chip devices. The fundamental understanding of the complicated electrokinetic phenomena in such crossing type microchannels therefore is necessary. In the literature, a few theoretical models studying the transport phenomena in similar crossing microchannels did not consider the spatial gradients of conductivity due to its complexity. However, the spatial gradients of electrical conductivity of buffer solution often exist in many applications (i.e. pumping a large number of unknown species and stacking the interested sample species) and it was demonstrated that the presence of the conductivity gradients has significant influences on the on-chip microfluidic injection processes. A new theoretical model was developed in this paper to study the transport phenomena in crossing microchannels with the consideration of a large range of spatial gradient of electric conductivity. This developed model was used to simulate the potential field, flow field, and concentration field of the injection processes where the conductivity of the sample-carrying buffer differs significantly from that of the driving buffer. The transport phenomena are found to be very sensitive to the conductivity difference between the sample-carrying buffer and the driving buffer. The developed model here can be employed to find the optimal voltages for controlling the dispensed sample size and to provide guidance for designing such a crossing microchannel in lab-on-a-chip devices. © 2004 Elsevier B.V. All rights reserved.
منابع مشابه
Effects of liquid conductivity differences on multi-component sample injection, pumping and stacking in microfluidic chips.
As an increasing number of processes are being integrated into Lab-on-a-chip devices, there is an increasing need for flexible and accurate sample manipulation techniques for effective transport and separation. Conductivity differences between running buffer and analyte samples can arise as a product of on-chip processing, or by design. The two situations studied here are sample pumping (where ...
متن کاملThousandfold signal increase using field-amplified sample stacking for on-chip electrophoresis.
Field-amplified sample stacking (FASS) leverages conductivity gradients between a volume of injected sample and the background buffer to increase sample concentration. A major challenge in applying FASS to on-chip assays is the initial setup of high-conductivity gradient boundaries in the region of the injected sample volume. We have designed, fabricated, and characterized a novel FASS-capillar...
متن کاملDetermination chlorine of groundwater with electrical conductivity by Geostatistical methods (Case study of drinking water wells Mashhad)
Information on chlorine concentration in groundwater for drinking and agriculture is important. If theconcentration of this element is in too much water can cause problems for humans and is toxic toplants. Measurement of chloride in groundwater is extensive, costly and time consuming. Find easyand inexpensive method has a special importance. the Statistical methods are based on spatialvariables...
متن کاملSpatial prediction of soil electrical conductivity using soil axillary data, soft data derived from general linear model and error measurement
Indirect measurement of soil electrical conductivity (EC) has become a major data source in spatial/temporal monitoring of soil salinity. However, in many cases, the weak correlation between direct and indirect measurement of EC has reduced the accuracy and performance of the predicted maps. The objective of this research was to estimate soil EC based on a general linear model via using se...
متن کاملOhmic Heating of Aloe vera Gel: Electrical Conductivity and Energy Efficiency
Ohmic heating is defined as a process which alternating electric current is passed through food with the primary purpose of heating it due to the electrical resistance and can be specially applied as an alternative heating method. In this research, Aloe vera gel concentrates having 0.5-2% soluble solids were ohmically heated up to 60°C by using four different voltage gradi...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2004