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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Synthesis and Photochromism of Naphthopyrans Bearing Naphthalimide Chromophore: Predominant Thermal Reversibility in Color-Fading and Fluorescence Switch
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Synthesis and Photochromism of Naphthopyrans Bearing Naphthalimide Chromophore: Predominant Thermal Reversibility in Color-Fading and Fluorescence Switch

机译:带有萘二甲酰亚胺发色团的萘并吡喃的合成和光致变色:褪色和荧光开关中的主要热可逆性

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Two novel photochromic naphthopyrans containing naphthalimide moieties (Nipl and Nip2) were studied in solution under flash photolysis conditions, exhibiting highly photochromic response, rapid thermal bleaching rate and good fatigue-resistance. Owing to the different N-substituted imide groups at the naphthalimide units, the thermal bleaching rate of Nip2 bearing phenyl on the naphthalimide unit is found to be approximately 2 times that of Nipl bearing n-butyl, indicating that the photochromic properties can be modulated with intro- duction of different functional groups on the naphthalimide unit. In Nipl and Nip2, the strong electron-withdrawing effect of the imide group incorporated at the naphthalimide moiety maintains several merits: (i) shifting absorption bands to longer wavelength, (ii) beneficial to an enhancement in the ratio of transoid-cis (TC) isomer and an increase in the transformation rate from transoid-trans (TT) to TC with respect to reference compound NP, and (iii) resulting in a preferable color bleaching rate and fading absolutely to their colorless state with thermal reversibility. As demonstrated in the system of NP, the slow transformation process from TT to TC might be the predominant dynamic step in thermal back process, leading to the residual color of NP being only faded to its original colorless state by visible light irradiation. The optical densities of colored forms for Nip 1 and Nip2 are dependent upon the intensity of incident light, ensuring a possible application in the manufacture of ophthalmic lenses and smart windows. Moreover, the fluorescence of Nipl and Nip2 can be switched on and off by photoinduced conversion between the closed and open forms.
机译:在闪光光解条件下,研究了两种含有萘二甲酰亚胺部分(Nipl和Nip2)的新型光致变色萘并吡喃,它们具有高光致变色响应,快速的热漂白速率和良好的抗疲劳性。由于萘二甲酰亚胺单元上不同的N-取代的酰亚胺基团,发现萘二甲酰亚胺单元上带有Nip2的苯基的热漂白速率约为带有正丁基的Nipl的热漂白速率的2倍,这表明光致变色性能可以通过在萘二甲酰亚胺单元上引入不同的官能团。在Nipl和Nip2中,结合在萘二甲酰亚胺部分上的酰亚胺基团具有很强的吸电子作用,这具有几个优点:(i)将吸收带移至更长的波长,(ii)有利于提高反式-顺式(TC )异构体和相对于参比化合物NP从反式-反式(TT)到TC的转化率增加,和(iii)导致优选的颜色漂白速率并通过热可逆性绝对褪色至无色状态。如NP系统中所示,从TT到TC的缓慢转化过程可能是热反过程中的主要动态步骤,导致NP的残留颜色仅在可见光照射下褪色至其原始无色状态。 Nip 1和Nip2的彩色形式的光密度取决于入射光的强度,从而确保了在制造眼镜片和智能窗户方面的可能应用。此外,可以通过在封闭形式和开放形式之间进行光诱导的转换来打开和关闭Nip1和Nip2的荧光。

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