Crystal Melting by Light: X-ray Crystal Structure Analysis of an Azo Crystal Showing Photoinduced Crystal-Melt Transition

Trans—cis photoisomerization in an azo compound containing azobenzene chromophores and long alkyl chains leads to a photoinduced crystal-melt transition (PCMT). X-ray structure analysis of this crystal clarifies the characteristic coexistence of the structurally ordered chromophores through their π•...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 136; no. 25; pp. 9158 - 9165
Autores principales: Manabu Hoshino, Emi Uchida, Yasuo Norikane, Reiko Azumi, Shunsuke Nozawa, Ayana Tomita, Tokushi Sato, Shin-ichi Adachi, Shin-ya Koshihara
Formato: Artículo
Publicado: American Chemical Society 6/25/2014
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Trans—cis photoisomerization in an azo compound containing azobenzene chromophores and long alkyl chains leads to a photoinduced crystal-melt transition (PCMT). X-ray structure analysis of this crystal clarifies the characteristic coexistence of the structurally ordered chromophores through their π• • •π interactions and disordered alkyl chains around room temperature. These structural features reveal that the PCMT starts near the surface of the crystal and propagates into the depth, sacrificing the π• • •π interactions. A temporal change of the powder X-ray diffraction pattern under light irradiation and a two-component phase diagram allow qualitative analysis of the PCMT and the following reconstructive crystallization of the cis isomer as a function of product accumulation. This is the first structural characterization of a compound showing the PCMT, overcoming the low periodicity that makes X-ray crystal structure analysis difficult.