论文标题

溶剂依赖性终止,大小和稳定性通过激光消融在液体中的溶剂合成中

Solvent-dependent termination, size and stability in polyynes synthesis by laser ablation in liquids

论文作者

Peggiani, Sonia, Marabotti, Pietro, Lotti, Riccardo Alberto, Facibeni, Anna, Serafini, Patrick, Milani, Alberto, Russo, Valeria, Bassi, Andrea Li, Casari, Carlo Spartaco

论文摘要

近年来,作为可能的新型纳米结构,人们对SP碳链的兴趣越来越大。 SP碳链的一个例子是所谓的Polyynes,其特征是单键和三键的交替,可以通过石墨靶的液体(Plal)中的脉冲激光消融来合成。在这项工作中,通过利用皮拉过程中的不同溶剂,例如水,乙腈,甲醇,乙醇和异丙醇,我们系统地研究了多扬形成和稳定性中的溶剂作用。溶液中甲基兰州氰基群的存在会影响Polyynes的终止,除了在HC22H到HC22H,甲基限制的Polyynes之外,还可以检测到高达18个碳原子(即HCNCH3)和高达HC12CN的甲基化Polyynes。每个物种的分配是通过紫外线光谱法完成的,并由振动光谱的密度功能理论模拟支持。此外,由于末端(氢,甲基和氰基群)在尺寸选择的Polyynes的特征性拉曼带的形状和位置,因此可以观察到表面增强的拉曼光谱法,因此可以观察到差异。已经研究了每个Polyyne的时间的演变,以评估色谱峰面积,并且大小,终止和溶剂对Polyynes稳定性的影响。

In recent years there has been a growing interest in sp-carbon chains as possible novel nanostructures. An example of sp-carbon chains are the so-called polyynes, characterized by the alternation of single and triple bonds that can be synthesized by pulsed laser ablation in liquid (PLAL) of a graphite target. In this work, by exploiting different solvents in the PLAL process, e.g. water, acetonitrile, methanol, ethanol, and isopropanol, we systematically investigate the solvent role in polyyne formation and stability. The presence of methyland cyano-groups in the solutions influences the termination of polyynes, allowing to detect, in addition to hydrogen-capped polyynes up to HC22H, methyl-capped polyynes up to 18 carbon atoms (i.e. HCnCH3) and cyanopolyynes up to HC12CN. The assignment of each species was done by UV-Vis spectroscopy and supported by density functional theory simulations of vibronic spectra. In addition, surface-enhanced Raman spectroscopy allowed to observe differences, due to different terminations (hydrogen, methyl-and cyano group), in the shape and positions of the characteristic Raman bands of the size-selected polyynes. The evolution in time of each polyyne has been investigated evaluating the chromatographic peak area, and the effect of size, terminations and solvents on polyynes stability has been individuated.

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