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Ultralow-density double-layer silica aerogel fabrication for the intact capture of cosmic dust in low-Earth orbits
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  • 作者:Makoto Tabata ; Hideyuki Kawai ; Hajime Yano…
  • 关键词:Silica aerogel ; Sol–gel polymerization ; Supercritical drying ; Cosmic dust ; Astrobiology ; Tanpopo
  • 刊名:Journal of Sol-Gel Science and Technology
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:77
  • 期:2
  • 页码:325-334
  • 全文大小:968 KB
  • 参考文献:1.Kistler SS (1931) Coherent expanded aerogels and jellies. Nature 127:741CrossRef
    2.Shi F, Wang L, Liu J (2006) Synthesis and characterization of silica aerogels by a novel fast ambient pressure drying process. Mater Lett 60:3718–3722CrossRef
    3.Yokogawa H, Yokoyama M (1995) Hydrophobic silica aerogels. J Non-Cryst Solids 186:23–29CrossRef
    4.Tabata M, Adachi I, Ishii Y, Kawai H, Sumiyoshi T, Yokogawa H (2010) Development of transparent silica aerogel over a wide range of densities. Nucl Instrum Methods A 623:339–341CrossRef
    5.Burchell MJ, Graham G, Kearsley A (2006) Cosmic dust collection in aerogel. Annu Rev Earth Planet Sci 34:385–418CrossRef
    6.Tsou P (1995) Silica aerogel captures cosmic dust intact. J Non-Cryst Solids 186:415–427CrossRef
    7.Noguchi T, Nakamura T, Ushikubo T, Kita NT, Valley JW, Yamanaka R, Kimoto Y, Kitazawa Y (2011) A chondrule-like object captured by space-exposed aerogel on the international space station. Earth Planet Sci Lett 309:198–206CrossRef
    8.Brownlee D, Tsou P, Aléon J et al (2006) Comet 81P/Wild 2 under a microscope. Science 314:1711–1716CrossRef
    9.Yamagishi A, Yano H, Okudaira K, Kobayashi K, Yokobori S, Tabata M, Kawai H (2007) TANPOPO: astrobiology exposure and micrometeoroid capture experiments. Biol Sci Space 21:67–75 [in Japanese]CrossRef
    10.Yamagishi A, Yano H, Okudaira K, Kobayashi K, Yokobori S, Tabata M, Kawai H, Yamashita M, Hashimoto H, Naraoka H, Mita H (2009) Tanpopo: astrobiology exposure and micrometeoroid capture experiments. Trans JSASS Space Tech Jpn 7:Tk_49–Tk_55CrossRef
    11.Yamagishi A, Yokobori S, Hashimoto H, Yano H, Higashide M, Tabata M, Imai E, Yabuta H, Kobayashi K, Kawai H (2014) Tanpopo: astrobiology exposure and micrometeoroid capture experiments—proposed experiments at the Exposure Facility of ISS-JEM. Trans JSASS Aerosp Tech Jpn 12:Tk_49–Tk_55CrossRef
    12.Tabata M, Imai E, Yano H, Hashimoto H, Kawai H, Kawaguchi Y, Kobayashi K, Mita H, Okudaira K, Sasaki S, Yabuta H, Yokobori S, Yamagishi A (2014) Design of a silica-aerogel-based cosmic dust collector for the Tanpopo mission aboard the International Space Station. Trans JSASS Aerosp Tech Jpn 12:Pk_29–Pk_34CrossRef
    13.National Institute of Standards and Technology (U.S. Department of Commerce) (2011) Carbon dioxide, Phase change data. In: Linstrom PJ (ed) NIST chemistry WebBook. http://​webbook.​nist.​gov/​cgi/​cbook.​cgi?​ID=​C124389&​Units=​SI&​Mask=​4#Thermo-Phase . Accessed 10 July 2015
    14.Tabata M, Adachi I, Kawai H, Sumiyoshi T, Yokogawa H (2012) Hydrophobic silica aerogel production at KEK. Nucl Instrum Methods A 668:64–70CrossRef
    15.Adachi I, Sumiyoshi T, Hayashi K, Iida N, Enomoto R, Tsukada K, Suda R, Matsumoto S, Natori K, Yokoyama M, Yokogawa H (1995) Study of a threshold Cherenkov counter based on silica aerogels with low refractive indices. Nucl Instrum Methods A 355:390–398CrossRef
    16.Sumiyoshi T, Adachi I, Enomoto R, Iijima T, Suda R, Leonidopoulos C, Marlow DR, Prebys E, Kawabata R, Kawai H, Ooba T, Nanao M, Suzuki K, Ogawa S, Murakami A, Khan MHR (1999) Silica aerogel Cherenkov counter for the KEK B-factory experiment. Nucl Instrum Methods A 433:385–391CrossRef
    17.Adachi I, Fratina S, Fukushima T, Gorišek A, Iijima T, Kawai H, Konishi M, Korpar S, Kozakai Y, Križan P, Matsumoto T, Mazuka Y, Nishida S, Ogawa S, Ohtake S, Pestotnik R, Saitoh S, Seki T, Sumiyoshi T, Tabata M, Uchida Y, Unno Y, Yamamoto S (2005) Study of highly transparent silica aerogel as a RICH radiator. Nucl Instrum Methods A 553:146–151CrossRef
    18.Tabata M, Adachi I, Kawai H, Kubo M, Sato T (2012) Recent progress in silica aerogel Cherenkov radiator. Phys Proc 37:642–649CrossRef
    19.Tillotson TM, Hrubesh LW (1992) Transparent ultralow-density silica aerogels prepared by a two-step sol-gel process. J Non-Cryst Solids 145:44–50CrossRef
    20.Tabata M, Adachi I, Fukushima T, Kawai H, Kishimoto H, Kuratani A, Nakayama H, Nishida S, Noguchi T, Okudaira K, Tajima Y, Yano H, Yokogawa H, Yoshida H (2005) Development of silica aerogel with any density. In: Yu B (ed) Conference record on 2005 IEEE nuclear science symposium, vol 2, pp 816–818
    21.Born M, Wolf E (1975) Principles of optics, 5th edn. Pergamon Press, Oxford
    22.Burchell MJ, Fairey SAJ, Foster NJ, Cole MJ (2009) Hypervelocity capture of particles in aerogel: dependence on aerogel properties. Planet Space Sci 57:58–70CrossRef
    23.Jones SM (2007) A method for producing gradient density aerogel. J Sol-Gel Sci Technol 44:255–258CrossRef
    24.Tabata M, Yano H, Kawai H, Imai E, Kawaguchi Y, Hashimoto H, Yamagishi A (2015) Silica aerogel for capturing intact interplanetary dust particles for the Tanpopo experiment. Orig Life Evol Biosph 45:225–229CrossRef
    25.Tabata M, Kawaguchi Y, Yokobori S, Kawai H, Takahashi J, Yano H, Yamagishi A (2011) Tanpopo cosmic dust collector: silica aerogel production and bacterial DNA contamination analysis. Biol Sci Space 25:7–12CrossRef
    26.Ogata Y, Yabuta H, Nakashima S, Okudaira K, Moriwaki T, Ikemoto Y, Hasegawa S, Tabata M, Yokobori S, Mita H, Kobayashi K, Imai E, Hashimoto H, Kawaguchi Y, Sugino T, Yano H, Yamagishi A (2013) Hypervelocity capture of Murchison meteorite particles in aerogel: ground-based experiment for the cosmic dusts capture at the International Space Station. ISTS Web paper archives, 2013-r-51p
    27.Kawaguchi Y, Sugino T, Tabata M, Okudaira K, Imai E, Yano H, Hasegawa S, Hashimoto H, Yabuta H, Kobayashi K, Kawai H, Mita H, Yokobori S, Yamagishi A (2014) Fluorescence imaging of microbe-containing particles shot from a two-stage light-gas gun into an aerogel. Orig Life Evol Biosph 44:43–60CrossRef
  • 作者单位:Makoto Tabata (1) (2)
    Hideyuki Kawai (1)
    Hajime Yano (2)
    Eiichi Imai (3)
    Hirofumi Hashimoto (2)
    Shin-ichi Yokobori (4)
    Akihiko Yamagishi (4)

    1. Department of Physics, Chiba University, Chiba, 263-8522, Japan
    2. Institute of Space and Astronautical Science (ISAS), Japan Aerospace Exploration Agency (JAXA), Sagamihara, 252-5210, Japan
    3. Department of Bioengineering, Nagaoka University of Technology, Nagaoka, 940-2188, Japan
    4. Department of Applied Life Sciences, Tokyo University of Pharmacy and Life Sciences, Hachioji, 192-0392, Japan
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Ceramics,Glass,Composites,Natural Materials
    Inorganic Chemistry
    Optical and Electronic Materials
    Nanotechnology
  • 出版者:Springer Netherlands
  • ISSN:1573-4846
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