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首页> 外文期刊>ACS nano >Air/Liquid Interfacial Nanoassembly of Molecular Building Blocks into Preferentially Oriented Porous Organic Nanosheet Crystals via Hydrogen Bonding
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Air/Liquid Interfacial Nanoassembly of Molecular Building Blocks into Preferentially Oriented Porous Organic Nanosheet Crystals via Hydrogen Bonding

机译:通过氢键合的空气/液体界面嵌段分子构建成优先取向多孔有机纳米晶体

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Nanosheets with highly regulated nanopores are ultimately thin functional materials for diverse applications including molecular separation and detection, catalysis, and energy conversion and storage. However, their availability has hitherto been restricted to layered parent materials, covalently bonded sheets, which are layered via relatively weak electrostatic interactions. Here, we report a rational bottom-up methodology that enables nanosheet creation beyond the layered systems. We employ the air/liquid interface to assemble a triphenylbenzene derivative into perfectly oriented highly crystalline noncovalent-bonded organic nanosheets under ambient conditions. Each molecular building unit connects laterally by hydrogen bonding, endowing the nanosheets with size- and position-regulated permanent nanoporosity, as established by in situ synchrotron X-ray surface crystallography and gas sorption measurements. Notably, the nanosheets are constructed specifically by interfacial synthesis, which suppresses the intrinsic complex interpenetrated structure of the bulk crystal. Moreover, they possess exceptional long-term and thermal stability and are easily transferrable to numerous substrates without loss of structural integrity. Our work shows the power of interfacial synthesis using a suitably chosen molecular component to create two-dimensional (2D) nanoassemblies not accessible by conventional bulk crystal exfoliation techniques.
机译:具有高度调节纳米孔的纳米片最终是多种应用的薄功能材料,包括分子分离和检测,催化和能量转换和储存。然而,它们的可用性迄今为止仅限于分层的母材料,共价键合板,其通过相对较弱的静电相互作用层分层。在这里,我们报告了一个合理的自下而上方法,使纳米存储器能够在分层系统之外创建。我们采用空气/液面界面在环境条件下将三苯基苯衍生物组装成完全取向高度结晶的非共价键合的有机纳米片。每个分子构建单元通过氢键键合横向连接,赋予纳米片具有尺寸和定位的永久性纳米光度,如原位同步X射线表面晶体学和气吸吸测量所建立的那样。值得注意的是,纳米片由界面合成具体构建,其抑制了散装晶体的内在复杂的互连结构。此外,它们具有特殊的长期和热稳定性,并且易于转移到许多基材而不丧失结构完整性。 Our work shows the power of interfacial synthesis using a suitably chosen molecular component to create two-dimensional (2D) nanoassemblies not accessible by conventional bulk crystal exfoliation techniques.

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