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用于多功能表面纳米图案化的动态金属-酚配位络合物

Dynamic Metal-Phenolic Coordination Complexes for Versatile Surface Nanopatterning.

作者信息

Chen Chaojian, Lin Millicent, Wahl Carolin, Li Yuanwei, Zhou Wenjie, Wang Zhe, Zhang Ye, Mirkin Chad A

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States.

International Institute for Nanotechnology, Northwestern University, Evanston, Illinois 60208, United States.

出版信息

J Am Chem Soc. 2023 Apr 12;145(14):7974-7982. doi: 10.1021/jacs.2c13515. Epub 2023 Mar 28.

Abstract

We report a general nanopatterning strategy that takes advantage of the dynamic coordination bonds between polyphenols and metal ions (e.g., Fe and Cu) to create structures on surfaces with a range of properties. With this methodology, under acidic conditions, 29 metal-phenolic complex-based precursors composed of different polyphenols and metal ions are patterned using scanning probe and large-area cantilever free nanolithography techniques, resulting in a library of deposited metal-phenolic nanopatterns. Significantly, post-treatment of the patterns under basic conditions (i.e., ammonia vapor) triggers a change in coordination state and results in the in situ generation of more stable networks firmly attached to the underlying substrates. The methodology provides control over feature size, shape, and composition, almost regardless of substrate (e.g., Si, Au, and silicon nitride). Under reducing conditions (i.e., H) at elevated temperatures (180-600 °C), the patterned features have been used as nanoreactors to synthesize individual metal nanoparticles. At room temperature, the ammonia-treated features can reduce Ag to form metal nanostructures and be modified with peptides, proteins, and thiolated DNA via Michael addition and/or Schiff base reaction. The generality of this technique should make it useful for a wide variety of researchers interested in modifying surfaces for catalytic, chemical and biological sensing, and template-directed assembly purposes.

摘要

我们报道了一种通用的纳米图案化策略,该策略利用多酚与金属离子(如铁和铜)之间的动态配位键,在具有一系列特性的表面上创建结构。使用这种方法,在酸性条件下,利用扫描探针和大面积无悬臂纳米光刻技术对由不同多酚和金属离子组成的29种基于金属酚络合物的前体进行图案化,从而得到一系列沉积的金属酚纳米图案。值得注意的是,在碱性条件下(即氨蒸气)对图案进行后处理会引发配位状态的变化,并导致原位生成牢固附着在底层基板上的更稳定网络。该方法几乎可以控制特征尺寸、形状和组成,而几乎不受基板(如硅、金和氮化硅)的影响。在高温(180 - 600°C)的还原条件下(即氢气),图案化特征已被用作纳米反应器来合成单个金属纳米颗粒。在室温下,经氨处理的特征可以将银还原形成金属纳米结构,并通过迈克尔加成和/或席夫碱反应与肽、蛋白质和硫醇化DNA进行修饰。这项技术的通用性应该使其对各种有兴趣对表面进行修饰以用于催化、化学和生物传感以及模板导向组装目的的研究人员有用。

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