首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >CRYOGENIC AND FLUIDIC WAYS LEAD TO LOW COST MICRO/NANO DEVICES
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CRYOGENIC AND FLUIDIC WAYS LEAD TO LOW COST MICRO/NANO DEVICES

机译:低温和流体方式导致低成本的微/纳诺设备

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Building systems as compactly as possible has been a major theme in modern science and engineering practices. However, such enthusiastic endeavor often encounters big troubles due to high cost and complexity of the process it involves. Part of the reasons comes from the methodology itself, the fabrication, designing and characterization procedure etc. Among various disciplines to making microano object, those enabled from the thermal and hydrodynamic science plays a rather important role. In this article, we will illustrate a cryogenic way for realizing a group of different microano devices which can be implemented as mechanical, hydraulic, electrical, or optical functional units. The basic principle of the method lies in the formation of ice crystals in small area, from which microano aqueous objects or signals transmitting across them can be blocked, manipulated and analyzed. In this way, a series of microano devices such as freeze tweezer, ice valve, freeze-thaw pump, electrical or optical signal switch and micro thermal analyzer etc. can be developed via a rather simple and low cost way. As examples, some latest advancement made in the authors' lab will be reviewed. Their innovative applications in a wide variety of microano engineering fields will be discussed. Further, to illustrate the low cost way to directly manufacture microano objects, we will explain a bubble fabrication method whose basic principle lies in the chemical reaction occurring at the fluidic interfaces between two or more soap adjacent bubbles. A unique virtue of the bubble is that it can have a rather huge diameter however an extremely small membrane thickness, whose smallest size can even reach nano scale. Therefore, the administrated chemical reaction in the common interface of the contacting bubbles would lead to products with extremely small size. Particularly, all these results were achieved via a rather straightforward way. The bubble builds up a bridge between the macroscopicmanipulation/observation and the fabrication in small world. Several typical micro structures as fabricated in the lab will be illustrated. As a flexible, easily controllable, and low cost method, the bubble fabrication can possibly be developed as a routine strategy for making microano structures in the near future.
机译:尽可能紧凑地构建系统一直是现代科学和工程实践的主要主题。然而,由于所涉及的过程的高成本和复杂性,这种热心的努力经常遇到大麻烦。部分原因来自于方法论本身,制造,设计和表征过程等。在制造微/纳米物体的各个学科中,热力学和流体动力学科学所推动的那些学科起着相当重要的作用。在本文中,我们将说明一种实现一组不同的微/纳米设备的低温方式,这些设备可以实现为机械,液压,电气或光学功能单元。该方法的基本原理在于在小区域内形成冰晶,从中可以阻挡,操纵和分析微/纳米水性物体或穿过它们的信号。以此方式,可以通过相当简单且低成本的方式来开发一系列微/纳米装置,例如冷冻镊子,冰阀,冻融泵,电或光信号开关以及微热分析仪等。作为示例,将回顾作者实验室中的一些最新进展。将讨论它们在各种微/纳米工程领域中的创新应用。此外,为了说明直接制造微米/纳米物体的低成本方法,我们将解释一种气泡制造方法,其基本原理在于在两个或多个肥皂相邻气泡之间的流体界面处发生的化学反应。气泡的独特优点是它可以具有相当大的直径,但是膜厚度却非常小,其最小尺寸甚至可以达到纳米级。因此,在接触气泡的公共界面中进行的化学反应将导致产物具有极小的尺寸。特别地,所有这些结果都是通过相当直接的方式实现的。泡沫在宏观与宏观之间架起了一座桥梁。 操纵/观察以及在小世界中的捏造。将说明实验室中制造的几种典型的微结构。作为一种灵活,易于控制且低成本的方法,气泡制造可能会发展为在不久的将来制造微/纳米结构的常规策略。

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