Mercuri M, Gimenez R, Berli C L A, Bellino M G
Comisión Nacional de Energía Atómica, CONICET, Departamento de Micro y Nanotecnología Av. Gral. Paz 1499 1650 Argentina
INTEC (Universidad Nacional del Litoral-CONICET) Predio CCT CONICET Santa Fe RN 168 3000 Santa Fe Argentina
RSC Adv. 2018 Feb 8;8(12):6414-6418. doi: 10.1039/c7ra13691a. eCollection 2018 Feb 6.
Designing and controlling spontaneous imbibition is becoming a key requirement for advanced devices, presenting a substantial scientific and engineering challenge. Here we describe an approach that allows directional imbibition into designed geometries. A set of custom domains based on paper microfluidics mold nano-imbibition in user-defined shapes such as curvatures, corners, and vertices into mesoporous thin films; enabling localized chemical reactions with programmable designs. The method also achieves nano-size filtration, allows the generation and delivery of reagent gradients in a nanofluidic fashion, and it can be used as a reactor for the synthesis of patterned metallic nanoparticle arrays. By using this easy-to-build hybrid platform, users can create functional nanofluidic domains in custom geometries and perform spatially shaped chemistry. The ability to integrate mesoporous nanofluidic generation and paper-based microfluidics has made the hybrid system an exciting candidate for versatile nanoflow applications.
设计和控制自发渗吸正成为先进设备的一项关键要求,这带来了重大的科学和工程挑战。在此,我们描述了一种允许定向渗吸到设计几何结构中的方法。一组基于纸基微流体的定制区域将纳米渗吸塑造为用户定义的形状,如曲率、拐角和顶点,进入介孔薄膜;从而实现具有可编程设计的局部化学反应。该方法还实现了纳米尺寸过滤,允许以纳米流体方式生成和输送试剂梯度,并且它可以用作合成图案化金属纳米颗粒阵列的反应器。通过使用这个易于构建的混合平台,用户可以在定制几何结构中创建功能性纳米流体区域并进行空间形状化学操作。将介孔纳米流体生成与纸基微流体集成的能力使该混合系统成为多功能纳流应用的一个令人兴奋的候选者。