首页> 外文学位 >Dendritic materials for optical applications: A. Synthesis and study of non-aggregating octasubstituted dendritic phthalocyanines for optical limiting applications. B. Synthesis and study of two-photon dendritic dyes for biomedical imaging applications.
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Dendritic materials for optical applications: A. Synthesis and study of non-aggregating octasubstituted dendritic phthalocyanines for optical limiting applications. B. Synthesis and study of two-photon dendritic dyes for biomedical imaging applications.

机译:用于光学应用的树枝状材料:A.用于光学限制应用的非聚集八取代树突状酞菁的合成和研究。 B.用于生物医学成像应用的双光子树突染料的合成和研究。

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This dissertation investigates the synthesis and analysis of new dendritic compounds for their utility as nonlinear optical materials. Two-photon absorbing dendritic dyes and octasubstituted dendritic phthalocyanines utilize the dendrons along the periphery in order to shield the central, "active" core from the external environment.; An attempt to obtain phthalocyanine materials for use as optical limiters entailed the attachment of dendritic substituents through a hydroquinone spacer to phthalonitriles which were then cyclized to give the target phthalocyanines. Investigation of the aggregation properties of these compounds showed that as the generation of the dendritic substituent increased, the amount of aggregation decreased. This was seen both in thin films as well as in solution. However, as the dielectric constant of the solvent increased, aggregation of individual phthalocyanines in solution also increased. Substitution on the periphery of the dendron also had a role in how the phthalocyanine behaved in solution. The presence of t-butyl groups in the meta positions along the periphery of the dendrimer further decreased the amount of aggregation that occurred in solution. The addition of zinc to the core of the phthalocyanine led to further prevention of aggregation, again in both thin films and in solution. Fluorescence studies on these compounds had indicated the presence of an energy transfer mechanism between the dendron periphery and the phthalocyanine core. The dendritic zinc phthalocyanines also displayed small KSV values which suggest that the approach of quenching molecules to the core of the phthalocyanine is greatly hindered in solution by the dendritic periphery.; In the development of a material for biomedical imaging, a strong effect was exhibited by the change in polarity of the solvent on the two-photon absorption (TPA) of bis-styrylbenzene (BSB) dyes which resulted in a loss of the fluorescence quantum yield (phif) as the polarity increased. Covalent attachment of different generations of a 4-carboxy terminated dendron to the dye resulted in a smaller decrease in the phif based upon the generation of the attached dendron. A study of the solvent effect on the dicyano-substituted BSB dendritic TPA dye indicated the presence of a possible hydrogen bonding interaction between the dendron and the dye at low pH. This interaction resulted in a strong decrease in the phif of the dye, a loss that was partially remedied by raising the pH to 12.
机译:本文研究了新的树枝状化合物作为非线性光学材料的合成和分析。吸收两光子的树枝状染料和八取代的树枝状酞菁利用树突沿周边,以保护中心的“活性”核免受外部环境的影响。尝试获得用作光学限幅剂的酞菁材料需要将树枝状取代基通过对苯二酚间隔基连接到邻苯二甲腈,然后环化生成目标邻苯二甲腈。对这些化合物的聚集性质的研究表明,随着树状取代基的生成增加,聚集量减少。在薄膜和溶液中均可见到这一点。但是,随着溶剂介电常数的增加,溶液中各个酞菁的聚集也增加。树突外围的取代也对酞菁在溶液中的行为有影响。沿着树枝状聚合物的周边的间位上存在叔丁基,这进一步减少了溶液中发生的聚集量。再次将锌添加到酞菁的核中导致了进一步防止聚集,无论是在薄膜中还是在溶液中。对这些化合物的荧光研究表明,在树枝状外围和酞菁核之间存在能量转移机制。树突状锌酞菁也显示出较小的KSV值,这表明树突状外围极大地阻碍了淬灭分子至酞菁核心的方法。在生物医学成像材料的开发中,溶剂的极性变化对双苯乙烯基苯(BSB)染料的双光子吸收(TPA)表现出强大的作用,导致荧光量子产率的损失(phif)随着极性的增加。基于附着的树突的产生,不同世代的4-羧基封端的树突与染料的共价结合导致phif的较小降低。对二氰基取代的BSB树突状TPA染料的溶剂作用的研究表明,在低pH值下,树突与染料之间可能存在氢键相互作用。这种相互作用导致染料的phif大大降低,这种损失可以通过将pH值提高到12来部分弥补。

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