Romi Sebastiano, Fanetti Samuele, Alabarse Frederico, Mio Antonio M, Haines Julien, Bini Roberto
LENS, European Laboratory for Non-linear Spectroscopy, Via N. Carrara 1, I-50019 Sesto Fiorentino, Firenze, Italy.
ICCOM-CNR, Istituto di Chimica dei Composti OrganoMetallici, Via Madonna del Piano 10, I-50019 Sesto Fiorentino, Firenze, Italy.
Nanoscale. 2022 Mar 24;14(12):4614-4625. doi: 10.1039/d1nr08188h.
Until recently, saturated carbon nanothreads were the missing tile in the world of low-dimension carbon nanomaterials. These one-dimensional fully saturated polymers possess superior mechanical properties by combining high tensile strength with flexibility and resilience. They can be obtained by compressing aromatic and heteroaromatic crystals above 15 GPa exploiting the anisotropic stress that can be achieved by the diamond anvil cell technique. Recently, double-core nanothreads were synthesized by compressing azobenzene crystals, achieving the remarkable result of preserving the azo group as a linker of the resulting double thread. Herein, we demonstrate the generality of these findings through the synthesis of double carbon nanothreads from stilbene and azobenzene-stilbene mixed crystals. Employment of Fourier transform infrared spectroscopy and synchrotron X-ray diffraction enabled a comprehensive characterization of the reactivity identifying threshold conditions, kinetics and structure-reaction relationship. In particular, the reaction is anticipated by a phase transition characterized by a sudden increase of the monoclinic angle and a collapse along the axis direction. Large bidimensional crystalline areas extending several tens of nanometers are evidenced by transmission electron microscopy also confirming the monoclinic unit cell derived from X-ray diffraction data in which threads possessing the polymer 1 structure, as suggested by density functional theory calculations, are packed. The most exciting result of this study is the demonstration of viable synthesis of double nanothreads where the number and the nature of chromophoric groups linking the threads can be tuned by preparing starting crystals of desired composition, thanks to the isomorphism typical of the pseudo-stilbene molecules. This is extremely important in tailoring nanothreads with tunable optical properties and an adjustable band gap, also exploiting the possibility of introducing substituents in the phenyl groups.
直到最近,饱和碳纳米线还是低维碳纳米材料领域中缺失的一块拼图。这些一维的完全饱和聚合物通过将高拉伸强度与柔韧性和弹性相结合,具有卓越的机械性能。它们可以通过利用金刚石对顶砧技术所能实现的各向异性应力,在15吉帕以上压缩芳香族和杂芳香族晶体来获得。最近,通过压缩偶氮苯晶体合成了双核纳米线,实现了将偶氮基团保留为所得双股线连接体的显著成果。在此,我们通过从芪和偶氮苯 - 芪混合晶体合成双碳纳米线,证明了这些发现的普遍性。傅里叶变换红外光谱和同步加速器X射线衍射的应用,使得能够全面表征反应活性,确定阈值条件、动力学以及结构 - 反应关系。特别是,该反应由一个相变预示,其特征是单斜角突然增大以及沿轴方向的塌陷。透射电子显微镜证明了延伸数十纳米的大二维结晶区域,这也证实了由X射线衍射数据得出的单斜晶胞,其中如密度泛函理论计算所表明的,具有聚合物1结构的线被堆积在一起。这项研究最令人兴奋的结果是证明了双纳米线的可行合成,其中连接这些线的发色团的数量和性质可以通过制备所需组成的起始晶体来调节,这得益于伪芪分子典型的同构性。这对于定制具有可调光学性质和可调节带隙的纳米线极其重要,同时也利用了在苯基中引入取代基的可能性。