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    • 105. 发明公开
    • ION IMPLANTATION SYSTEM AND ION IMPLANTATION SYSTEM
    • 离子体系统
    • EP1719823A1
    • 2006-11-08
    • EP05703340.9
    • 2005-01-06
    • Ideal Star Inc.
    • KASAMA, YasuhikoOMOTE, KenjiYOKOH, Kuniyoshi
    • C23C14/48C01B31/02H01L21/265H01L51/00H01L29/06H01M8/02H01B13/00H01J37/317
    • B82Y10/00B82Y30/00B82Y40/00C01B32/15C01B32/152C23C14/0605C23C14/48H01J37/32412H01L51/0046H01M8/1016H01M2300/0091Y02E10/549Y02P70/521Y02P70/56
    • In a containing-fullerene production method for giving acceleration energies to containment target atom ions by using an acceleration electrode to thereby implant the containment target atoms into an empty fullerene film previously formed on a deposition-assistance substrate, charged particles constituting an ion beam are only containment target atom ions having the same polarity, so that repulsive forces act between the charged particles, and the ion beam is diverged particularly in case of ion implantation with a low energy, thereby problematically making it difficult to implant ions at a high density into the fullerene film, and decreasing a yield of containing-fullerene. Thus, it is devised to transport plasma including charged particles made of containment target atom ions and charged particles of a polarity opposite to that of the containment target atom ions, up to an empty fullerene film on a deposition-assistance substrate by a uniform magnetic field generated by magnetic field generating means, and to give acceleration energies to the containment target atoms by a bias voltage applied to the deposition-assistance substrate, thereby implanting the containment target atoms into the fullerene film. Since attractive forces act between the charged particles constituting the plasma so that the plasma is not diverged, it becomes possible to achieve a high density ion implantation to improve a yield of containing-fullerene even in ion implantation with a low energy.
    • 在含有富勒烯的制造方法中,通过使用加速电极对加压能量施加容纳目标原子离子,从而将容纳目标原子注入到预先形成在沉积辅助基板上的空的富勒烯膜中,构成离子束的带电粒子仅 具有相同极性的容纳目标原子离子,使得排斥力在带电粒子之间作用,并且离子束在具有低能量的离子注入的情况下特别分散,由此有问题地使得难以将高密度地离子注入到 富勒烯膜,并且降低含有富勒烯的产率。 因此,可以通过均匀的磁场将沉积辅助基板上的空容器膜等离子体输送到包含目标原子离子的带电粒子和与容纳靶原子离子极性相反的带电粒子, 并且通过施加到沉积辅助衬底的偏置电压来向容纳目标原子施加加速能量,从而将容纳靶原子注入到富勒烯膜中。 由于吸引力作用在构成等离子体的带电粒子之间,使得等离子体不发散,所以即使在低能量的离子注入中,也可以实现高密度离子注入以提高含有富勒烯的产率。
    • 106. 发明公开
    • FULLERENE BASED AMINO ACIDS
    • 富勒烯基氨基酸
    • EP1713723A2
    • 2006-10-25
    • EP05711449.8
    • 2005-01-14
    • WILLIAM MARSH RICE UNIVERSITY
    • BARRON, Andrew, R.YANG, Jianzhong
    • C01B31/02A61K31/185
    • B82Y30/00A61K31/185A61K31/195B82Y40/00C01B32/15C01B32/152C07K1/003C07K5/06078C07K5/06086C07K7/06C07K7/08C07K14/001
    • The present invention is directed to a series of new compounds, combining the unique properties of fullerenes and bio-active amino acid residues, and to methods for making such compounds. The present invention is directed toward fullerene-based amino acids, and to amino acid residues, peptide chains, proteins, and polypeptides made from such fullerene-based amino acids. The present invention is further directed to amino acid residues, peptide chains, proteins, and polypeptides comprising such fullerene-based amino acids and into which such fullerene-based amino acids have been incorporated. Exemplary compounds have been prepared, and these compounds have been characterized and confirmed with infrared (IR) spectroscopy, nuclear magnetic resonance (NMR) spectroscopy, mass spectrometry (MS), etc. These new compounds, which are additions to the existing amino acid residue family, may potentially possess useful pharmaceutical application and may provide a new platform for further exploration in cancer therapy, and peptide and protein engineering.
    • 本发明涉及结合富勒烯和生物活性氨基酸残基的独特性质的一系列新化合物,以及制备这些化合物的方法。 本发明涉及基于富勒烯的氨基酸,以及由这种富勒烯基氨基酸制成的氨基酸残基,肽链,蛋白质和多肽。 本发明进一步涉及包含这样的基于富勒烯的氨基酸的氨基酸残基,肽链,蛋白质和多肽,并且其中引入了这种富勒烯基氨基酸。 已经制备了示例性化合物,并且已经用红外(IR)光谱,核磁共振(NMR)光谱,质谱(MS)等表征和确认了这些化合物。这些新化合物添加到现有的氨基酸残基 家族,可能潜在地拥有有用的药物应用,并且可能为癌症治疗,肽和蛋白质工程的进一步探索提供新的平台。
    • 107. 发明公开
    • APPARATUS AND METHOD FOR PREPARING FULLERENE
    • VORRICHTUNG UND VERFAHREN ZUR HERSTELLUNG VON FULLEREN
    • EP1712521A1
    • 2006-10-18
    • EP03782796.1
    • 2003-12-17
    • Frontier Carbon Corporation
    • Yamamoto, Takaharu, c/o Frontier Carbon Corp.Takakura, Tsuyoshi, c/o Frontier Carbon Corp.Takehara, Hiroaki, c/o Frontier Carbon Corp.Arikawa, Mineyuki, c/o Frontier Carbon Corp.
    • C01B31/02
    • B82Y30/00B82Y40/00C01B32/15C01B32/152
    • Methods for producing fullerenes, comprising regulating a fullerene- and soot-containing high-temperature airflow formed through incomplete combustion or pyrolysis of a hydrocarbon fuel to a temperature greater than 260°C (preferably 300°C) but not greater than 900°C, passing the resultant airflow through a recovery device (12) using filter elements (30) made of ceramic or metal, to thereby recover a soot-containing powder separated from polycyclic aromatic compounds, wherein the recovery device (12) includes a soot separating unit (A) having a plurality of filter elements (30) allowing the powder to attach onto surfaces thereof and the airflow to pass therethrough and a powder storing unit (B) provided under the soot separating unit (A) for storing the separated soot, and the filter element (30) uses a heat-resistant filtering member exhibiting a filtering flow rate capability in a range of 0.2 to 10 m 3 /m 2 /minute and a pressure loss in a range of 0.1 to 35 Torr.
    • 制备富勒烯的方法,包括调节通过不完全燃烧或烃燃料热解形成的含富勒烯和含烟灰的高温气流至高于260℃(优选300℃)但不高于900℃的温度, 使用由陶瓷或金属制成的过滤元件(30)将所得到的气流通过回收装置(12),从而回收与多环芳族化合物分离的含烟灰的粉末,其中回收装置(12)包括烟灰分离单元 A)具有允许粉末附着在其表面上的多个过滤元件(30)和通过其中的气流以及设置在烟灰分离单元(A)下方的用于存储分离的烟灰的粉末存储单元(B),并且 过滤元件(30)使用表现出0.2〜10m 3 / m 2 /分钟范围内的过滤流量能力和0.1〜35托的压力损失的耐热过滤构件。