Guangwei Che, Xingyu Tang, Puyi Lang, Jie Liu, Yajie Wang, Xuan Wang, Xiaoge Wang, Jing Ju, Aijiao Guan, Qian Li, Junfeng Xiang, Lutong Guo, Yali Qiao, Xiao Dong, Ho-Kwang Mao, Haiyan Zheng, Kuo Li
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引用次数: 0
摘要
碳纳米线(CNTh)是一种sp3键合的一维纳米材料,具有极高的强度和优异的柔韧性。然而,报道的CNTh通常具有不均匀的线程内结构,合成结构特异性的CNTh仍然是一个很大的挑战。本文选择具有强偶极子的1,2,3-三氟苯(1,2,3- tfb)作为前驱体。通过将1,2,3- tfb压缩到20.1 GPa,得到了具有“拉链聚合物”结构的CNTh。在施加压力下,1,2,3- tfb在柱中反平行堆叠,并在柱内h -碳亲二烯/ F-碳亲二烯与F, h -碳二烯之间通过选择性顺序[4+2]聚合,然后其余原子“拉链式”键合。得到的CNTh具有高度疏水性,接触角为124.6°。优异的柱状反平行π∙∙∙π堆积和由f取代引入的碳原子的独特反应活性是高反应选择性的原因,这为原子级有序cnth的精确合成提供了新的见解。
Carbon nanothread (CNTh) is a sp3-bonded one-dimensional nanomaterial that was predicted to combine the extreme strength with excellent flexibility. However, the reported CNTh usually has a nonuniform intrathread structure, and the synthesis of structure-specific CNTh is still a big challenge. Here, we selected 1,2,3-trifluorobenzene (1,2,3-TFB) with strong dipole as a precursor. By compressing 1,2,3-TFB to 20.1 GPa, a CNTh with a "zipper polymer" structure is obtained. Under applied pressure, 1,2,3-TFB are anti-parallelly stacked in column, and polymerize via selective sequential [4 + 2] polymerization between H-carbon dienophile/F-carbon dienophile and F, H-carbon diene within the column, followed by the "zippered" bonding of the rest atoms. The obtained CNTh is highly hydrophobic with contact angle of 124.6°. The excellent columnar anti-parallel π···π stacking and distinct reactivities of carbon atoms introduced by the F-substitution are responsible for the high reaction selectivity, which provides new insight for the precise synthesis of atom-level ordered CNThs.
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