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首页> 外文期刊>Nanoscale >Dibenzochrysene enables tightly controlled docking and stabilizes photoexcited states in dual-pore covalent organic frameworks
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Dibenzochrysene enables tightly controlled docking and stabilizes photoexcited states in dual-pore covalent organic frameworks

机译:Dibenzochrysene支持严格控制对接并在dual-pore稳定光激的州共价有机框架

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摘要

Covalent organic frameworks (COFs), consisting of covalently connected organic building units, combine attractive features such as crystallinity, open porosity and widely tunable physical properties. For optoelectronic applications, the incorporation of heteroatoms into a 2D COF has the potential to yield desired photophysical properties such as lower band gaps, but can also cause lateral offsets of adjacent layers. Here, we introduce dibenzo[g,p]chrysene (DBC) as a novel building block for the synthesis of highly crystalline and porous 2D dual-pore COFs showing interesting properties for optoelectronic applications. The newly synthesized terephthalaldehyde (TA), biphenyl (Biph), and thienothiophene (TT) DBC-COFs combine conjugation in the a,b-plane with a tight packing of adjacent layers guided through the molecular DBC node serving as specific docking site for successive layers. The resulting DBC-COFs exhibit a hexagonal dual-pore kagome geometry, which is comparable to COFs containing another molecular docking site, namely 4,4 ',4 '',4 '''-(ethylene-1,1,2,2-tetrayl)-tetraaniline (ETTA). In this context, the respective interlayer distances decrease from about 4.6 angstrom in ETTA-COFs to about 3.6 angstrom in DBC-COFs, leading to well-defined hexagonally faceted single crystals sized about 50-100 nm. The TT DBC-COF features broad light absorption covering large parts of the visible spectrum, while Biph DBC-COF shows extraordinary excited state lifetimes exceeding 10 ns. In combination with the large number of recently developed linear conjugated building blocks, the new DBC tetra-connected node is expected to enable the synthesis of a large family of highly correlated and ordered 2D COFs with promising optoelectronic properties.
机译:共价有机框架(咖啡),组成的共价连接的有机建筑单位,有吸引力的特性,比如结合起来结晶度、开孔率和广泛可调物理特性。应用程序、杂原子的结合成一个2 d咖啡有可能产生所期望的光物理性质如低带隙,但也会导致相邻的横向偏移量层。(DBC)作为合成的新构建块高度结晶和多孔的2 d dual-pore咖啡展示有趣的属性光电应用程序。对酞醛合成(TA)、联苯(Biph)和thienothiophene (TT) DBC-COFs结合结合在一个b-plane严格包装通过分子相邻层的引导DBC节点作为具体对接网站连续层。一个是六角dual-pore几何,戈薇与咖啡包含另一个分子停靠站点,即4,4’,4”,4“”——(ethylene-1,1,2,2-tetrayl) -tetraaniline(埃特)。层间距离减少约4.6埃ETTA-COFs约3.6埃DBC-COFs,定义良好的六角形在上雕琢平面的单一晶体大小约50 - 100海里。TT DBC-COF广泛的光吸收特性可见光谱覆盖大部分地区,虽然Biph DBC-COF显示非凡的兴奋寿命超过10 ns。最近的大量发展线性共轭的构建块,新的DBC预计将使tetra-connected节点合成一个大家庭的高度相关的并下令2 d具有广阔的光电咖啡属性。

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