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Formation process of empty and metal-containing fullerenes - molecular dynamics and FT-ICR studies

机译:空和含金属的富勒烯的形成过程-分子动力学和FT-ICR研究

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The formation mechanism of empty and metal-containing fullerene was studied through MD (molecular dynamics) simulations and FT-ICR (Fourier transform ion cyclotron resonance) mass spectroscopy of laser vaporized carbon cluster. Multi-body classical potential functions for metal-carbon and metal-metal interactions were constructed based on DFT (density functional theory) calculations of various forms of small clusters MC_n and M_n (M = La, Sc, Ni). Using the modified Brenner potential for carbon-carbon interaction, the clustering process starting from 500 isolated carbon atoms and 5 metal atoms in gas phase was simulated under the controlled temperature condition at 3000K. The difference of clustering process of La@Cn, Sc@Cn and NiCn were compared with empty fullerene formation simulation. FT-ICR mass spectrometer directly connected to the laser vaporization cluster beam source was implemented in order to experimentally study the clustering process. The increase of cluster nozzle pressure roughly corresponded to the later stage of the molecular dynamics simulation. The FT-ICR mass spectra of metal-carbon composite clusters were compared for various sample materials used for arc-discharge generation of metal-containing fullerene and SWNT (single-wall carbon nanotube); La, Y, Sc, Gd, Ce, Ca, and Ni-Y. Positive La-C, Y-C, Sc-C, Gd-C, Ce-C binary clusters commonly showed strong MC(_2n)~+ signal in the range of 36 < 2n with intense magic numbers at MC(_44)~+, MC(_50)~+ and MC(_60)~+. It was speculated that the even-numbered clusters corresponded to the annealed random caged clusters observed in the MD simulation.
机译:通过MD(分子动力学)模拟和FT-ICR(傅立叶变换离子回旋共振)质谱对激光汽化碳簇的形成机理进行了研究。基于各种形式的小团簇MC_n和M_n(M = La,Sc,Ni)的DFT(密度泛函理论)计算,构建了用于金属-碳和金属-金属相互作用的多体经典势能函数。利用改进的布伦纳势能进行碳-碳相互作用,在温度为3000K的条件下,模拟了从气相中500个孤立的碳原子和5个金属原子开始的聚集过程。将La @ Cn,Sc @ Cn和NiCn的聚集过程的差异与空富勒烯形成模拟进行了比较。 FT-ICR质谱仪直接连接到激光汽化团簇束源,以实验研究团簇过程。簇状喷嘴压力的增加大致对应于分子动力学模拟的后期。比较了用于产生含金属的富勒烯和SWNT(单壁碳纳米管)电弧放电的各种样品材料的金属-碳复合材料簇的FT-ICR质谱; La,Y,Sc,Gd,Ce,Ca和Ni-Y。正La-C,YC,Sc-C,Gd-C,Ce-C二元簇通常在36 <2n的范围内显示强MC(_2n)〜+信号,在MC(_44)〜+,MC处具有强幻数(_50)〜+和MC(_60)〜+。据推测,偶数簇对应于在MD模拟中观察到的退火的随机笼状簇。

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