Journal of the Vacuum Society of Japan
Online ISSN : 1882-4749
Print ISSN : 1882-2398
ISSN-L : 1882-2398
53 巻, 1 号
選択された号の論文の12件中1~12を表示しています
巻頭言
小特集1「有機半導体素子における界面制御」
解説
小特集2「環境問題に貢献する真空技術」
解説
  • 朝倉 清高
    2010 年53 巻1 号 p. 19-24
    発行日: 2010年
    公開日: 2010/03/09
    ジャーナル フリー
      The catalyst is a key technology for the realization of the sustainable society. The mechanism of heterogeneous catalyst is now being established based on the surface science approach which is supported by the ultrahigh vacuum techniques. Recently ambient pressure techniques are developing. The surface reaction can be now understood based on the machinery concepts of molcules and atoms. Spatiotemporal behavior of the surface atoms and molecules are revealed and what force works between the reactants. In the near future, the surface reaction can be controlled by physical means.
  • 石塚 尚吾, 小牧 弘典, 吉山 孝志, 水越 一路, 山田 昭政, 仁木 栄
    2010 年53 巻1 号 p. 25-29
    発行日: 2010年
    公開日: 2010/03/09
    ジャーナル フリー
      Chalcopyrite Cu(In, Ga)Se2(CIGS) and related compounds belong to the semiconducting I-III-VI2 materials family and are most promising thin film solar cells which have demonstrated up to 20% cell efficiencies and over 15% module efficiencies to date. Many CIGS companies in EU, US, and Japan have started several ten MW/year scale commercial production and have announced to increase their production capacities further within a couple of years. In this review, recent developments in highly efficient CIGS module technologies and issues to be solved for further development are discussed. Recent progress in the development of reliable alkali incorporation control techniques which is required to demonstrate high cell efficiencies from flexible CIGS cells fabricated on alkali-free substrates is also introduced. The mechanism behind the beneficial effects of alkali doping into CIGS absorber layers is also discussed.
  • 安井 治之, 瀧 真, 長谷川 祐史, 鷹合 滋樹
    2010 年53 巻1 号 p. 30-36
    発行日: 2010年
    公開日: 2010/03/09
    ジャーナル フリー
      A diamond-like carbon (DLC) film is characterized by its high hardness and low friction coefficient. These properties have quickly promoted their wide use in consumer products, such as tools, sliding components like dies, razor blades, and PET bottles. However, a DLC film has insufficient hardness. This has prevented its application to cutting tools for aluminum alloys of emerging demand. Therefore, this study addresses novel hard nanocarbon films, including high-density DLC films, nano-diamond films, and hybrid nano-diamond (HND) films as our new study objects. The hard nanocarbon films were formed on silicon wafers and tungsten carbide (WC) substrates. The film properties of hardness, composition, structure, and friction were analyzed. The result of high density DLC film hardness is high, 80-90 GPa, with a low friction coefficient of less than 0.1.
      We have coated these onto cutting tools, conducted aluminum-alloy cutting experiments, and estimated their applicability. Results have suggested the degradation of cutting ability because of aluminum built-up; the cutting distance with a tungsten carbide tip was 20 m without coating and 200 m with a DLC coating. The cutting distance was extended to 4000 m with HND coating, which was a DLC film and nano-diamond multilayer. A high-density DLC film might even be extended up to 10000 m, that is, its lifetime could be lengthened to 50 times that of an ordinary DLC film.
一般論文
解説
  • Chun Guang YANG, Lie XU
    2010 年53 巻1 号 p. 37-40
    発行日: 2010年
    公開日: 2010/03/09
    ジャーナル フリー
      The growing concerns over global energy crisis and the phasing out of polyurethane foams blown with CFC-11, which has high Ozone Depletion Potential(ODP), have pushed thermal insulation technology to improve its efficiency. Vacuum Insulation Panel(VIP) has been regarded as a super thermal insulation material with a thermal resistance of about 5-10 times higher than conventional thermal insulation. Appropriate vacuum in VIP is one of the most important factors contributing to the long term heat insulation performance of VIP. In this paper, the researches on three factors, which influence internal pressure inside VIP, including gas and water vapor permeation through the barrier, gas absorption by getters and desiccants and outgassing of the kernel, were reviewed respectively. Following this, the research emphasis and suggestions, which should be paid attention to, were summarized.
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