CNR Istituto Nazionale di Ottica-Sezione di Napoli Via Campi Flegrei, 34-80078 Pozzuoli (Napoli), Italy.
Nat Nanotechnol. 2010 Jun;5(6):429-35. doi: 10.1038/nnano.2010.82. Epub 2010 May 9.
Manipulating and dispensing liquids on the micrometre- and nanoscale is important in biotechnology and combinatorial chemistry, and also for patterning inorganic, organic and biological inks. Several methods for dispensing liquids exist, but many require complicated electrodes and high-voltage circuits. Here, we show a simple way to draw attolitre liquid droplets from one or multiple sessile drops or liquid film reservoirs using a pyroelectrohydrodynamic dispenser. Local pyroelectric forces, which are activated by scanning a hot tip or an infrared laser beam over a lithium niobate substrate, draw liquid droplets from the reservoir below the substrate, and deposit them on the underside of the lithium niobate substrate. The shooting direction is altered by moving the hot tip or laser to form various patterns at different angles and locations. Our system does not require electrodes, nozzles or circuits, and is expected to have many applications in biochemical assays and various transport and mixing processes.
在生物技术和组合化学领域,以及在对无机、有机和生物墨进行图案设计时,对微纳米尺度的液体进行操控和分配非常重要。目前存在几种分配液体的方法,但许多方法都需要复杂的电极和高压电路。在这里,我们展示了一种简单的方法,即使用热电极电动力学分配器从一个或多个液滴或液膜储液器中吸取纳升级别的液滴。通过在铌酸锂基板上扫描热尖端或红外激光束来激活局部的热电作用力,从基板下方的储液器中吸取液滴,并将其沉积在铌酸锂基板的下侧。通过移动热尖端或激光来改变射击方向,从而在不同角度和位置形成各种图案。我们的系统不需要电极、喷嘴或电路,预计在生化分析和各种传输和混合过程中有许多应用。