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Spontaneous electrical charging of droplets by conventional pipetting

机译:常规移液通过液滴的自发电荷

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We report that a droplet dispensed from a micropipette almost always has a considerable electrical charge of a magnitude dependent on the constituents of the droplet, on atmospheric humidity and on the coating material of pipette tip. We show that this natural electrification of a droplet originates from the charge separation between a droplet and pipette tip surface by contact with water due to the ionization of surface chemical groups. Charge on a droplet can make it difficult to detach the droplet from the pipette tip, can decrease its surface tension, can affect the chemical characteristics of solutions due to interactions with charged molecules, and can influence the combination and localization of charged bio-molecules; in all cases, the charge may affect results of experiments in which any of these factors is important. Thus, these findings reveal experimental parameters that should be controlled in experiments that use micropipettes.
机译:我们报道,从微米纤维中分配的液滴几乎总是具有相当大的电荷,其上依赖于液滴的成分,在大气湿度和移液管尖端的涂料上。我们表明,由于表面化学基团的电离,液滴的这种自然电流源自液滴和移液管尖端表面之间的电荷分离。液滴上的电荷可以使液滴从移液管尖端拆下液滴,可以降低其表面张力,可以影响由于与带电分子相互作用的溶液的化学特性,并可以影响带电生物分子的组合和定位;在所有情况下,电荷可能会影响实验结果,其中任何这些因素都很重要。因此,这些发现揭示了应该在使用微量化的实验中控制的实验参数。

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