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首页> 外文期刊>Thin Solid Films >Perhydropolysilazane-derived silica-polymethylmethacrylate hybrid thin films highly doped with spiropyran: Effects of polymethylmethacrylate on the hardness, chemical durability and photochromic properties
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Perhydropolysilazane-derived silica-polymethylmethacrylate hybrid thin films highly doped with spiropyran: Effects of polymethylmethacrylate on the hardness, chemical durability and photochromic properties

机译:高度掺杂螺吡喃的全氢聚硅氮烷衍生的二氧化硅-聚甲基丙烯酸甲酯杂化薄膜:聚甲基丙烯酸甲酯对硬度,化学耐久性和光致变色性能的影响

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Polymethylmethacrylate (PMMA)-perhydropolysilazane (PHPS) hybrid thin films doped with spiropyran were prepared by spin-coating, which were then converted into 0.26-1.7 μm thick, spiropyran-doped PMMA-silica hybrid films by exposure treatment over aqueous ammonia. The spiropyran/(spiropyran + PHPS + PMMA) mass ratio was fixed at a high value of 0.2 so that the films exhibit visual photochromic changes in color, while the PMMA/(PMMA + PHPS) mass ratio, r, was varied. The spiropyran molecules in the as-prepared films were in merocyanine (MC) and spiro (SP) forms, with and without an optical absorption at 500 nm, at low (r≤0.2) and high (r≥.4) PMMA contents, respectively. When PMMA content r was increased from 0 to 0.2, the degree of the MC-to-SP conversion on vis light illumination was enhanced, while at higher r's the spiropyran molecules underwent photodegradation. When the silica film (r=0) was soaked in xylene under vis light, the spiropyran molecules were almost totally leached out, while not on soaking in the dark. On the other hand, no leaching occurred for the film of r=0.2 either in the presence or absence of vis light. These suggest that the introduction of PMMA is effective in improving the chemical durability of the films, while the silica film (r=0) is an interesting material with a photoresponsive controlled-release ability. The pencil hardness of the films decreased with increasing PMMA content, but remained over 9H at r<0.4.
机译:通过旋涂制备掺有螺吡喃的聚甲基丙烯酸甲酯(PMMA)-全氢聚硅氮烷(PHPS)杂化薄膜,然后通过在氨水上进行曝光处理将其转化为0.26-1.7μm厚的螺吡喃掺杂的PMMA-二氧化硅杂化膜。螺吡喃/(螺吡喃+ PHPS + PMMA)的质量比固定为0.2的高值,从而使膜呈现可见的光致变色颜色变化,而PMMA /(PMMA + PHPS)的质量比r则变化。制备的薄膜中的螺吡喃分子呈花青(MC)和螺(SP)形式,在500 nm处有和没有光吸收,PMMA含量低(r≤0.2)和高(r≥.4),分别。当PMMA含量r从0增加到0.2时,可见光照射下MC到SP的转化程度增强,而在较高r时,螺吡喃分子进行了光降解。当将二氧化硅膜(r = 0)在可见光下浸泡在二甲苯中时,螺吡喃分子几乎全部被浸出,而没有在黑暗中浸泡。另一方面,在有或没有可见光的情况下,对于r = 0.2的膜都没有发生浸出。这些表明,PMMA的引入有效地改善了膜的化学耐久性,而二氧化硅膜(r = 0)是具有光响应性控释能力的令人感兴趣的材料。膜的铅笔硬度随PMMA含量的增加而降低,但在r <0.4时仍保持9H以上。

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