首页> 外文会议>Asian Symposium on Nanotechnology and Nanoscience 2002 (AsiaNANO 2002); 2002 >MOLECULAR RECOGNITION OF NUCLEOBASES ATTACHED TO SELF-ASSEMBLED MONOLAYERS DETECTED BY CHEMICAL FORCE MICROSCOPY AND QUARTZ CRYSTAL MICROBALANCE
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MOLECULAR RECOGNITION OF NUCLEOBASES ATTACHED TO SELF-ASSEMBLED MONOLAYERS DETECTED BY CHEMICAL FORCE MICROSCOPY AND QUARTZ CRYSTAL MICROBALANCE

机译:化学力显微镜和石英晶体微透镜检测的自组装单分子膜上的核酸碱基的分子识别

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In order to develop a new DNA sequencing method by using chemical force microscopy (CFM), we have investigated the interaction of the hydrogen bonding between surfaces of nucleobase self-assembled monolayers (SAMs) and AFM-tips modified with the nucle-obases. The two different adhesion forces, the jump-in force and pull-off force, between the AFM-tip modified with cytosine-SAM and the surfaces of four kinds of nucleobase SAMs were measured in water (20℃) by CFM. The adsorption of poly (C) onto a nucleobase-SAM on a gold electrode of quartz crystal microbalance (QCM) was measured as resonance frequency changes. The relative relation among four bases showed similar tendency in the adhesion force measured by the cytosine AFM-tip and in the adsorption amount of poly (C) on the QCM electrode as well as in the theoretically calculated interaction energies between two nucleobases.
机译:为了开发使用化学力显微镜(CFM)的新的DNA测序方法,我们研究了核碱基自组装单分子膜(SAMs)与原子核修饰的AFM尖端之间的氢键相互作用。用CFM在水中(20℃)测量了用胞嘧啶SAM修饰的AFM尖端与四种核碱基SAMs表面的两种不同的粘附力-跳入力和拉脱力。随着共振频率的变化,测量了聚(C)在石英微天平(QCM)的金电极上的核碱基-SAM上的吸附。四个碱基之间的相对关系在通过胞嘧啶AFM尖端测得的粘附力,QCM电极上聚C的吸附量以及两个核碱基之间的理论计算的相互作用能方面显示出相似的趋势。

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