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A Diarylethene Cocrystal that Converts Light into Mechanical Work

机译:将光转换为机械功的二芳基乙烯共晶体

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摘要

The photomechancial effect of a rectangular plate two-component cocrystal composed of a photochromic diarylethene derivative, 1,2-bis(2-methyl-5-(1-naphthyl)-3-thienyl)perfluorocyclopentene (1o), and perfluoronaphthalene (FN) has been examined. The crystal of 1o·FN with the size of 1-5 mm in length exhibits reversible bending motion upon alternate irradiation with ultraviolet (UV) and visible light. The reversible bending could be repeated over 250 times. In situ X-ray crystallographic analysis revealed that the deformation of the crystal is due to the elongation of the b-axis of the unit cell, which corresponds to the long axis of the plate crystal, induced by the shape change of component diarylethene molecules upon photocyclization. The bending motion was observed even at 4.7 K, and dynamic measurement of the bending proved that the anisotropic expansion of the crystal takes place in the microsecond time scale at the low temperature. Molecular crystal cantilevers made of 1o·FN can lift metal balls, the weight of which is 200-600 times heavier than the weight of the crystal, upon UV irradiation. The maximum stress generated by UV irradiation was estimated to be 44 MPa, which is 100 times larger than that of muscles (~0.3 MPa) and comparable to that of piezoelectric crystals, such as lead zirconate titanate (PZT) (~50 MPa).
机译:由光致变色二芳基乙烯衍生物,1,2-双(2-甲基-5-(1-萘基)-3-噻吩基)全氟环戊烯(1o)和全氟萘(FN)组成的矩形板两组分共晶体的光机械效应已经检查过了。长度为1-5 mm的1o·FN晶体在紫外线(UV)和可见光交替照射下表现出可逆的弯曲运动。可逆弯曲可以重复超过250次。原位X射线晶体学分析表明,晶体变形是由于晶格中组分二芳基乙烯分子的形状变化引起的晶胞b轴伸长(对应于平板晶体的长轴)引起的光环化。即使在4.7 K时也观察到弯曲运动,并且对弯曲的动态测量证明在低温下,晶体的各向异性膨胀发生在微秒级的时间范围内。由1o·FN制成的分子晶体悬臂可以提起金属球,在紫外线照射下,其重量是晶体重量的200-600倍。紫外线辐射产生的最大应力估计为44 MPa,比肌肉(〜0.3 MPa)大100倍,与压电晶体如钛酸锆钛酸铅(PZT)(〜50 MPa)相当。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第40期|p.14172-14178|共7页
  • 作者单位

    Department of Chemistry and Research Center for Smart Molecules, Rikkyo University,Nishi-Ikebukuro 3-34-1, Toshima-ku, Tokyo 171-8501, Japan Precursory Research for Embryonic Science and Technology (PRESTO), Japan Science and Technology Agency (JST),Honcho 4-1-8, Kawaguchi-shi, Saitama 332-0012, Japan;

    rnDepartment of Chemistry and Research Center for Smart Molecules, Rikkyo University,Nishi-Ikebukuro 3-34-1, Toshima-ku, Tokyo 171-8501, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:15:51

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