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Patterning two-dimensional free-standing surfaces with mesoporous conducting polymers

机译:用介孔导电聚合物构图二维自支撑表面

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摘要

The ability to pattern functional moieties with well-defined architectures is highly important in material science, nanotechnology and bioengineering. Although two-dimensional surfaces can serve as attractive platforms, direct patterning them in solution with regular arrays remains a major challenge. Here we develop a versatile route to pattern two-dimensional free-standing surfaces in a controlled manner assisted by monomicelle close-packing assembly of block copolymers, which is unambiguously revealed by direct visual observation. This strategy allows for bottom-up patterning of polypyrrole and polyaniline with adjustable mesopores on various functional free-standing surfaces, including two-dimensional graphene, molybdenum sulfide, titania nanosheets and even on one-dimensional carbon nanotubes. As exemplified by graphene oxide-based mesoporous polypyrrole nanosheets, the unique sandwich structure with adjustable pore sizes (5-20 nm) and thickness (35-45 nm) as well as enlarged specific surface area (85 m(2) g(-1)) provides excellent specific capacitance and rate performance for supercapacitors. Therefore, this approach will shed light on developing solution-based soft patterning of given interfaces towards bespoke functions.
机译:在材料科学,纳米技术和生物工程学中,使用定义明确的架构对功能部分进行图案化的能力非常重要。尽管二维表面可以用作吸引人的平台,但是在规则阵列中直接对它们进行构图仍然是一项重大挑战。在这里,我们开发了一种通用途径,可通过嵌段共聚物的单胶束密堆积组装,以受控方式对二维自立表面进行图案化,这可以通过直接的目视观察清楚地揭示出来。该策略允许在各种功能性独立表面(包括二维石墨烯,硫化钼,二氧化钛纳米片,甚至一维碳纳米管)上自底向上构图具有可调介孔的聚吡咯和聚苯胺。如以氧化石墨烯为基的介孔聚吡咯纳米片所举例说明的,独特的夹心结构具有可调节的孔径(5-20​​ nm)和厚度(35-45 nm)以及更大的比表面积(85 m(2)g(-1) ))为超级电容器提供出色的比电容和速率性能。因此,该方法将有助于开发针对定制功能的给定接口的基于解决方案的软图案。

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