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Covalently bonded three-dimensional carbon nanotube solids via boron induced nanojunctions

机译:通过硼诱导的纳米结共价键结合三维碳纳米管固体

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摘要

The establishment of covalent junctions between carbon nanotubes (CNTs) and the modification of their straight tubular morphology are two strategies needed to successfully synthesize nanotube-based three-dimensional (3D) frameworks exhibiting superior material properties. Engineering such 3D structures in scalable synthetic processes still remains a challenge. This work pioneers the bulk synthesis of 3D macroscale nanotube elastic solids directly via a boron-doping strategy during chemical vapour deposition, which influences the formation of atomic-scale “elbow” junctions and nanotube covalent interconnections. Detailed elemental analysis revealed that the “elbow” junctions are preferred sites for excess boron atoms, indicating the role of boron and curvature in the junction formation mechanism, in agreement with our first principle theoretical calculations. Exploiting this material’s ultra-light weight, super-hydrophobicity, high porosity, thermal stability, and mechanical flexibility, the strongly oleophilic sponge-like solids are demonstrated as unique reusable sorbent scaffolds able to efficiently remove oil from contaminated seawater even after repeated use.
机译:碳纳米管(CNT)之间共价键的建立和直管形态的修饰是成功合成具有优异材料性能的基于纳米管的三维(3D)框架所需的两种策略。在可扩展的合成过程中对此类3D结构进行工程设计仍然是一个挑战。这项工作开创了在化学气相沉积过程中直接通过硼掺杂策略直接进行3D宏观纳米管弹性固体大量合成的过程,这影响了原子级“肘”结和纳米管共价互连的形成。详细的元素分析显示,“肘”结是过量硼原子的首选位点,表明硼和曲率在结形成机理中的作用,与我们的第一原理理论计算一致。利用这种材料的超轻重量,超疏水性,高孔隙率,热稳定性和机械柔韧性,强亲油性海绵状固体被证明是独特的可重复使用的吸附剂支架,即使在重复使用后也能有效地从受污染的海水中去除油。

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