• 本文报道了氮掺杂富勒烯的红外和紫外可见光谱。

    Nitrogen doped fullerene derivative's IR and UV vis spectra are reported.

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  • 利用直流电弧法,合成了含钙的富勒烯金属包合物。

    Ca-containing Endohedral Metallofullerenes were synthesized by DC arc discharge method.

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  • 介绍了近几年来氟化富勒烯的合成、分离和一般性能。

    Recent works about the synthesis, isolation and general properties of fluorofullerene are de- scribed briefly.

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  • 1996年的化学奖也授予一种新的碳形式——巴克敏斯特富勒烯。

    The 1996 chemistry prize was also awarded for a new form of carbon, buckminsterfullerene.

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  • 本文综述了富勒烯(C60)在摩擦学中的研究进展。

    The progress of the fullerene (C60) applied in tribology was reviewed in this paper.

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  • 介绍了富勒烯碳分子的结构、性质、制备方法及其应用情况。

    This paper describes the structure, properties and applications of fullerenes.

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  • 目前最高效的有机太阳能电池生产所使用的富勒烯只有这两种。

    Currently the most efficient organic solar cells are manufactured using one of only two different fullerenes.

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  • 在富勒烯化学中,化学修饰一直是富勒烯研究的主要领域之一。

    Chemical modification is one of the most important research fields in the fullerene chemistry.

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  • 基于此,本文采用真空热处理的方法来制备碳纳米洋葱状富勒烯。

    In this paper, a new method of vacuum heat-treatment was used to prepare macroscopic quantity of nano onion-like fullerenes.

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  • 索德柏立富勒烯里的氦气同位素组成,与某些陨石、彗尘中的一样。

    The Sudbury fullerenes contained helium with compositions similar to some meteorites and cosmic dust.

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  • 展望了纳米洋葱状富勒烯基础研究、宏量制备和应用研究的发展趋向。

    The emphasis is placed on basic study, macroscopic preparation and potential ap- plications of nano onion-like fullerenes.

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  • 介绍了富勒烯及碳纳米管两类纳米材料的制备、结构、特性及应用前景。

    The paper introduces the preparation methods, structure and characters of fullerences and carbon nanotubes as well as their applied prospects.

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  • 发现了炭化物中存在着纳米碳管、洋葱状富勒烯结构及金刚石晶格结构。

    Nanophase carbon tube, onion-like graphitic particles and diamond structure are first found in wood charcoal of Chinese Fir.

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  • 富勒烯的形成条件特殊,普通的地球环境和地质过程不利于富勒烯的生成。

    For its special conditions of production, fullerene is hardly yielded through the process of the common earth environment and dynamic geology.

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  • 这些大型富勒烯与索德柏立的富勒烯一样,都藏有源自太空的氦、氖、氩。

    Like their smaller counterparts from the Sudbury crater, these larger structures contained extraterrestrial helium, neon and argon.

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  • 当金属含量较高时,这种碳笼结构的金属富勒烯化合物转变为金属碳化物。

    When the transition metal content increases, the carbon cage can break up and metal carbides are formed.

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  • 然而,由于缺乏有效宏量制备纳米洋葱状富勒烯的方法,使其应用研究进展缓慢。

    However, the application studies of onion-like fullerenes develop slowly for the lack of effective preparation methods.

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  • 富勒烯的发现为人们提出了有关分子构筑的全新概念,开辟了碳化学研究的新领域。

    The discovery of fullerenes made mention of a new conception about the molecule construction and initiated a new domain of carbon chemistry.

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  • 单质碳第三种同素异形体——富勒烯及其化合物的出现,已引起化学界的极大关注。

    The turning-up of Fullerene and its Compounds, the third kind of allotrope of carbon in simple substance, has been taken a great interest in in chemical circles.

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  • 但是对洋葱状富勒烯的制备研究,目前还存在许多的问题(能量损耗高、收率低等)。

    Up to date, there are many some problems in the preparation of nano onion-like fullerenes (a high cost and low yield ).

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  • 富勒烯通常成为巴克球,是一种由60个碳原子以单键和双键相连组成的足球形碳单质。

    Buckyballs, as they became known colloquially, are football-shaped molecules made of 60 carbon atoms linked by single and double bonds.

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  • 巴达与我于1994年一听说这个发现,就请波里达检验我们在索德柏立找到的富勒烯。

    As soon as Bada and I became aware of this discovery, in 1994, we asked Poreda to examine our Sudbury fullerenes.

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  • 富勒烯及其衍生物是一类具有独特物理化学特性的化合物,在生物医学领域有广泛的应用前景。

    Fullerenes are a class of compounds with unique chemical and physical properties, which potential USES can be explored in the biological medicine field.

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  • 简要介绍了钡、团簇、羟基和富勒烯等的放电,探讨了这四种物质在气体放电灯中应用的可能性。

    Gas discharges of barium, cluster, hydroxyl and fullerene were introduced, and the probability of these four emitters 'application in gas discharge lamps was discussed.

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  • 由于C _(60)独特的化学和物理特性,富勒烯及其衍生物的生物活性近年来引起了人们的注意。

    Due to unique chemical and physical features of C_ (60), the biological activities of fullerenes and their derivatives have been recognized in the recent years.

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  • 在这种包合物中有机小分子是电子的受体,而碳笼则为电子的给体,这与金属富勒烯包合物恰恰相反。

    The dopant is an electron acceptor and the cage is a donor which is different from the case of metallofullerenes.

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  • 在这种包合物中有机小分子是电子的受体,而碳笼则为电子的给体,这与金属富勒烯包合物恰恰相反。

    The dopant is an electron acceptor and the cage is a donor which is different from the case of metallofullerenes.

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