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An investigation of parameter effect on microcontact printing and feasibility study for application in microelectronic and biomedical

机译:微电子和生物医学应用的微观印刷和可行性研究参数效应研究

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Microcontact printing (μCP) has been developed about 17 years ago and it is an outstanding surface patterning technique in micron scale and, even in nanoscale. Surface science communities like engineers and biologists have been promoting attention in μCP; therefore they have been rich in improvement to the μCP process itself. However, in order to aim at minimizing some drawbacks of μCP such as a parameter affects, ink-transfer issues and stamp deformation, many studies have been performed recently. In this paper we describe the parameter that affects the performance of printing multiple micro scale lines experimentally, in which are applied load force, uniformity of applied force area, wetness of ink before stamping, ink viscosity and stamp deformation. In this study, we will exhibit the result of graphic inks used for μCP as preliminary study and non-engineered live cells before using functional materials and engineered live cells for the study of cell growth. This is vital prior to enhance the possibility of patterning micrometer or nanometer scale structures with high precision using conductive ink for electronic application.
机译:微接触印刷(μCP)已于大约17年前开发,它是微米尺度的杰出表面图案化技术,即使在纳米尺度上也是如此。地表科学社区等工程师和生物学家一直在促进μCP;因此,它们已经丰富地改善了μCP过程本身。然而,为了旨在最小化μCP的一些缺点,例如参数影响,墨迹转移问题和印模变形,最近已经进行了许多研究。在本文中,我们描述了通过实验性地打印多个微尺度线的性能的参数,其中施加负载力,施加力区域的均匀性,冲压前的墨水湿润,油墨粘度和印模变形。在本研究中,我们将在使用功能材料和工程活的活细胞进行细胞生长之前,表现出用于μCP作为初步研究和非工程活的活细胞的图形油墨的结果。这至关重要,在增强使用导电墨水的电子应用具有高精度的图案化千分尺或纳米结构结构的可能性。

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