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以2,5-二氰基对二甲苯为起始原料,通过NBS溴化,Abuzov和Horner反应合成了一种D-π-A型不对称有机双光子吸收材料的关键中间体2,5-二氰基-4-[(二乙氧基磷酰)甲基]-4′-(N,N-二苯基)氨基二苯乙烯,其结构经NMR,IR和MS表征。 相似文献
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有机双光子吸收材料研究进展 总被引:1,自引:0,他引:1
有机双光子吸收材料是光电信息功能材料领域的研究热点之一.同无机双光子吸收材料相比,有机双光子吸收材料有更好的可设计性和可裁接性.从分子设计的角度介绍了国内外所取得的一些最新进展,并对有机双光子吸收材料的发展方向作了综述. 相似文献
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We investigate the influence of strain and electric field on the properties of a silicane sheet. Some elastic parameters of silicane, such as an in-plane stiffness of 52.55 N/m and a Poisson’s ratio of 0.24, are obtained by calculating the strain energy. Compared with silicene, silicane is softer because of its relatively weaker Si-Si bonds. The band structure of silicane is tunable by a uniform tensile strain, with the increase of which the band gap decreases monotonously. Moreover, silicane undergoes an indirect-direct gap transition under a small strain, and a semiconductor-metal transition under a large strain. The electric field can change the Si-H bond length of silicane significantly. When a strong field is applied, the H atom at the high potential side becomes desorbed, while the H atom at the low potential side keeps bonded. So an external electric field can help to produce single-side hydrogenated silicene from silicane. We believe this study will be helpful for the application of silicane in the future. 相似文献
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