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Borazatruxenes as precursors for hybrid C-BN 2D molecular networks

机译:Borazatruxenes作为混合C-BN 2 d的前兆分子网络

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Synthesizing atomically thin, crystalline two-dimensional (2D) molecular materials which combine carbon with other elements is an emerging field requiring both custom-designed molecular precursors and their ability to organize into networks (hydrogen-bonded or covalent). Hybrid carbon-boron nitride (C-BN) networks face the additional challenge of needing hydrolytically-stable BN-containing molecular precursors. Here, we show that borazatruxenes (truxene-like molecules with a borazine core) and their halogenated derivatives are highly stable precursors suitable for on-surface assembly. Using scanning tunneling microscopy (STM) and density functional theory (DFT) simulations we demonstrate hierarchical H-bonded assembly based on chiral homodimers of tribromo-borazatruxenes (3Br-borazatruxenes) as building blocks for both 1D chains and 2D networks. A low-symmetry, H-bonded chiral 2D lattice forms on Au(111) from the C3-symmetric 3Br-borazatruxenes, leading to large enantiomorphic domains that are molecularly homochiral. Such homochiral segregation is a necessary condition if chiral C-BN covalent networks are to be obtained via subsequent on-surface reactions. We show via DFT that up to two Na atoms can be trapped within the small pores of this dense lattice, while further Na atoms can adsorb on preferred network sites; this leads to hybrid Na-molecular network electronic bands with anisotropic dispersion and significant (up to hundreds of meV) bandwidths, as well as significant doping, that can engender anisotropic transport through the network. Finally, electronic structure comparisons (combining both experiment and computation) between borazatruxene, its tri-brominated derivative and truxene show that the borazine core controls the band gap increase, while also inducing C–B pz–pz electron delocalization that facilitates a continuous electron path across the molecule. Furthermore, as shown by DFT, the borazine core drives inter-layer B–N polar interactions that promote adsorption of BN containing molecules in a staggered configuration, a mechanism to be exploited in layer-by-layer supra-molecular assembly of novel hybrid C-BN materials.
机译:综合自动薄,水晶分子材料的二维(2 d)结合是一个新兴的碳和其他元素字段要求专门设计的分子前体和组织的能力网络(氢键或共价)。面对carbon-boron氮化(C-BN)网络需要额外的挑战hydrolytically-stable BN-containing分子体细胞。(与硼吖嗪核心truxene-like分子)卤代衍生物是高度稳定前体适合表面组装。利用扫描隧道显微镜(STM)和密度泛函理论(DFT)模拟我们演示基于分层H-bonded组装手性为tribromo-borazatruxenes(3 br-borazatruxenes)作为两个构建块1 d和2 d网络链。H-bonded手性二维点阵形式在非盟(111)C3-symmetric 3 br-borazatruxenes,导致大的分子对映异构的域homochiral。如果手性C-BN共价的必要条件网络是通过后续获得表面反应。两个钠原子可以被困在小毛孔的密集格子,而进一步Na原子可以吸附在首选网络网站;导致混合Na-molecular网络电子乐队与各向异性色散和重要(高达数百兆电子伏)带宽,以及重要的掺杂,可以产生各向异性通过网络传输。(结合电子结构比较实验和计算)borazatruxene tri-brominated导数和苯骈表明,硼吖嗪核心控制带隙增加,同时诱导cb pz-pz电子离域,促进了一个连续的电子在分子路径。此外,由DFT如图所示,硼吖嗪核心驱动器夹层b n极相互作用促进BN包含分子吸附一个交错配置,一种机制利用在逐层超分子装配混合C-BN新材料。

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