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首页> 外文期刊>Japanese journal of applied physics >Novel Field-Induced Gray-Level Selective Patterning of Self-Assembled Aminosilane Monolayer on SiO_2 Surfaces by Scanning Probe Bond-Breaking Lithography
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Novel Field-Induced Gray-Level Selective Patterning of Self-Assembled Aminosilane Monolayer on SiO_2 Surfaces by Scanning Probe Bond-Breaking Lithography

机译:扫描探针键断裂平版印刷技术在SiO_2表面上自组装氨基硅烷单层的新型场致灰度选择性图案化

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摘要

We demonstrated a successful strategy for combining the straightforward scanning probe chemical bond-breaking lithography and self-assembly monolayer (SAM) techniques for constructing nanoscale architectural structures of gold nanoparticles (AuNPs) onto modified SiO_2 surfaces. The hydroxyl-terminated surface of the sample substrate was modified by silanization with N-(2-aminoethyl)-3-aminopropyl-trimethoxysilane (AEAPTMS) molecules. Local-field-induced scanning probe bond-breaking lithography is adopted to selectively decompose the chemical bonds of AEAPTMS SAMs on aminosilane-modified SiO_2 surfaces. From the experiments, a tip bias of less than 4.5 V cannot effectively decompose chemical bonds of AEAPTMS SAMs. Gray-level selectively patterned pictures were successfully observed on a modified 2.5-nm-thick SiO_2 surface by applying dc voltage (2.5-5.5 V) between the atomic force microscopy (AFM) conductive tip and the SiO_2 surface under ambient conditions. After the scanning probe selective decomposition of AEAPTMS SAMs, AuNPs with negative-charged citrate surfaces were selectively anchored in the selective patterning region via Coulomb electrostatic force. With proper control, it is considered that this novel technique can be applicable to the generation of various nanofabricated devices.
机译:我们展示了结合直接扫描探针化学键断裂平版印刷术和自组装单层(SAM)技术的成功策略,该技术用于在修饰的SiO_2表面上构建金纳米颗粒(AuNPs)的纳米级建筑结构。通过用N-(2-氨基乙基)-3-氨基丙基-三甲氧基硅烷(AEAPTMS)分子硅烷化来修饰样品基材的羟基末端表面。采用局部场致扫描探针键断裂光刻技术,选择性地分解氨基硅烷改性的SiO_2表面上的AEAPTMS SAMs的化学键。根据实验,低于4.5 V的尖端偏压无法有效分解AEAPTMS SAM的化学键。在环境条件下,通过在原子力显微镜(AFM)导电尖端和SiO_2表面之间施加直流电压(2.5-5.5 V),在改性后的2.5 nm厚的SiO_2表面上成功观察到灰度选择性图案化的图片。扫描探针选择性分解AEAPTMS SAM后,通过库仑静电力将具有负电荷柠檬酸盐表面的AuNP选择性锚定在选择性构图区域中。通过适当的控制,可以认为这种新颖的技术可以应用于各种纳米加工设备的生产。

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  • 来源
    《Japanese journal of applied physics》 |2009年第4issue2期|594-598|共5页
  • 作者单位

    Institute of Information and Communication, MingDao University, 369 Wen-Hwa Road, Peetow, Changhua 52345, Taiwan;

    Institute of Information and Communication, MingDao University, 369 Wen-Hwa Road, Peetow, Changhua 52345, Taiwan;

    Institute of of Nanotechnology, National Chiao Tung University, 1001 Ta Hsueh Road, Hsinchu 30050, Taiwan;

    Institute of of Electro-physics, National Chiao Tung University, 1001 Ta Hsueh Road, Hsinchu 30050, Taiwan;

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