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Combinatorial design of molecular seeds for chirality-controlled synthesis of single-walled carbon nanotubes

机译:单壁碳纳米管手性控制合成的分子种子组合设计

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The chirality-controlled synthesis of single-walled carbon nanotubes (SWCNTs) is a major challenge facing current nanomaterials science. The surface-assisted bottom-up fabrication from unimolecular CNT seeds (precursors), which unambiguously predefine the chirality of the tube during the growth, appears to be the most promising approach. This strategy opens a venue towards controlled synthesis of CNTs of virtually any possible chirality by applying properly designed precursor molecules. However, synthetic access to the required precursor molecules remains practically unexplored because of their complex structure. Here, we report a general strategy for the synthesis of molecular seeds for the controlled growth of SWCNTs possessing virtually any desired chirality by combinatorial multi-segmental assembly. The suggested combinatorial approach allows facile assembly of complex CNT precursors (with up to 100 carbon atoms immobilized at strictly predefined positions) just in one single step from complementary segments. The feasibility of the approach is demonstrated on the synthesis of the precursor molecules for 21 different SWCNT chiralities utilizing just three relatively simple building blocks.
机译:单壁碳纳米管(SWCNTs)的手性控制合成是当前纳米材料科学的主要挑战。表面辅助从单分子的CNT种子(前体)的自下而上的制造,它明确地预定精制的管道在生长过程中的手持过程中,似乎是最有前途的方法。该策略通过施加适当设计的前体分子来开启几乎任何可能的手性的CNT的合成。然而,由于其复杂的结构,对所需前体分子的合成进入仍未探测。在这里,我们报告了通过组合多段组件对具有几乎任何所需手性的SWCNTs的分子种子合成的一般策略。建议的组合方法允许复合CNT前体(最多100个碳原子在严格预定位置固定)的容易组装,只需在互补段的一步中。对21种不同SWCNT手性的前体分子的合成来证明了该方法的可行性,仅利用三个相对简单的构建块。

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