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12篇 您的检索式:作者名="Ogomi"
    题名 作者 年代 出处 被引量
1Mechanically Drawn Hydro Gels Uniaxially Orient Hydroxyapatite Crystals and Cell Extension 显示文摘KANEKO T OGOMI D AKASHI M 2004Chemical Materials2004,16,26:1
2CH3NH3SnxPb(1–x)I3perovskite solar cells covering up to 1060 nm显示文摘OGOMI Y MORITA A TSUKAMOTO S 2014J Phys Chem Lett2014,5,6:1
3Bioinspired organic -inorganic composite materials prepared by an alternate soaking process as a tissue reconstitution matrix显示文摘OGOMI D SERIZAWA T AKASHI M 2003J Biomed Mater Res A2003,67,4:1
4查看详情显示文摘Charoensirithavom P Ogomi Y Sagawa T Hayase S Yoshikaw S 0,,:1
5Improve- ment of dye-sensitized solar cell through TiCh-treated TiO2 nanotube arrays显示文摘Charoensirithavom P Ogomi Y Sagawa T 2010J Electrochem Soc2010,157,3:1
6All-solid perovskite solar cells with HOCO-R-NH3 + I- anchor-group inserted between porous Titania and perovskite显示文摘Ogomi Y Morita A Tsukamoto S 2014Journal of Physical Chemistry C2014,118,16:1
7A facile route to TiO2 nanotube arrays for dye-sensitized solar cells 显示文摘Charoensirithavorn P Ogomi Y Sagawa T 2009J Cryst Growth2009,311,:1
8Improvement of dye-sensitized solar cell through TiCl4-treated TiO2 nanotube arrays显示文摘Charoensirithavorn P Ogomi Y Sagawa T Hayase S Yoshikawa S 2010Journal of The Electrochemical Society2010,157,3:1
9CH3NH3SnxPb(1-x)I3Perovskite Solar Cells Covering up to 1 060 nm显示文摘Ogomi Y Morita A Tsukamoto S 2014The Journal of Physical Chemistry Letters2014,5,6:1
10Ultrafast selective extraction of hot holes from cesium lead iodide perovskite films显示文摘Lead halide perovskites have some unique properties which are very promising for optoelectronic applications such as solar cells, LEDs and lasers. One important and expected application of perovskite halide semiconductors is solar cell operation including hot carriers. This advanced solar cell concept allows overcoming the Shockley–Queisser efficiency limit, thereby achieving energy conversion efficiency as high as 66% by extracting hot carriers. Understanding ultrafast photoexcited carrier dynamics and extraction in lead halide perovskites is crucial for these applications. Here, we clarify the hot carrier cooling and transfer dynamics in all-inorganic cesium lead iodide(CsPbI_3) perovskite using transient absorption spectroscopy and Al_2O_3, poly(3-hexylthiophene-2,5-diyl)(P_3HT) and TiO_2 as selective contacts. We find that slow hot carrier cooling occurs on a timescale longer than 10 ps in the cases of CsPbI_3/Al_2O_3 and CsPbI_3/TiO_2, which is attributed to hot phonon bottleneck for the high photoexcited carrier density. An efficient ultrafast hole transfer from CsPbI_3 to the P_3 HT hole extracting layer is observed. These results suggest that hot holes can be extracted by appropriate selective contacts before energy dissipation into the halide perovskite lattice and that CsPbI_3 has a potential for hot carrier solar cell applications.Qing Shen Teresa S.Ripolles Jacky Even Yaohong Zhang Chao Ding Feng Liu Takuya Izuishi Naoki Nakazawa Taro Toyoda Yuhei Ogomi Shuzi Hayase 2018Journal of Energy Chemistry2018,27,4:1
11CH3NH3SnxPb(1-x)I3perovskite solar cells covering up to 1 060nm显示文摘OGOMI Y MORITA A TSUKAMOTO S 2014J Phys Chem Lett2014,5,6:1
12Controlled release based on the dissolution of a calciumcarbonate layer deposited on hydrogels显示文摘D Ogomi T Serizawa M Akashi 2005Journal of Controlled Release2005,103,:1
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