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Microcontact printing technology as a method of fabrication of patterned Self Assembled Monolayers for application in nanometrology

机译:微接触印刷技术作为制造图案化自组装单层的制造方法,用于在纳米术学中施用

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This paper is focused on manufacture technology of molecular self-assembled monolayers (SAM) using microcontact printing (μCP) techniqe. This technique, due to its low-cost and simplicity, is a very attractive one for further development of molecular electronics and nanotechnology. The SAM can be produced on gold or silicon oxide using thiol and silane based chemistry respectively [1]. The μCP techniques allow the imposition of molecular structures in specific areas. The chemical properties of the fabricated layers depend on the functional groups of tail molecules. Such structures can be used as chemical receptors or as interface between the substrate and the biosensor receptors [2]. Architecture of the tail molecule determines the chemical reactivity and hydrophilic or hydrophobic properties. In addition it modifies the tribological properties [4] and electrical structure parameters, such as contact potential diference (CPD) [5]. The height of the SAM structure containing carbon chain is highly dependent on the length and type of binding molecules to the substrate, which enables application of the μCP SAM structures in height metrology. The results of these studies will be presented in the work.
机译:本文专注于使用微接触印刷(μCP)TechniQe的分子自组装单层(SAM)的制造技术。由于其低成本和简单性,这种技术是一个非常有吸引力的,用于进一步发展分子电子和纳米技术。可以分别使用硫醇和硅烷化学在金或氧化硅上制造SAM [1]。 μCP技术允许在特定区域中施加分子结构。制造层的化学性质取决于尾部分子的官能团。这种结构可以用作化学受体或基材和生物传感器受体之间的界面[2]。尾部分子的结构决定了化学反应性和亲水性或疏水性质。此外,它改变了摩擦学特性[4]和电气结构参数,例如接触电位差异(CPD)[5]。含有碳链的SAM结构的高度高度依赖于底物的结合分子的长度和类型,这使得能够在高度计量中施加μCPSAM结构。这些研究的结果将在工作中提出。

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