...
首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Organization and intramolecular charge-transfer enhancement in tripodal tris[(pyridine-4-yl)- phenyl]amine push–pull molecules by intercalation into layered materials bearing acidic functionalities
【24h】

Organization and intramolecular charge-transfer enhancement in tripodal tris[(pyridine-4-yl)- phenyl]amine push–pull molecules by intercalation into layered materials bearing acidic functionalities

机译:三脚架三[(吡啶-4-基)-苯基]胺推挽分子的组织和分子内电荷转移增强,方法是插层到带有酸性官能团的层状材料中

获取原文
获取原文并翻译 | 示例
           

摘要

Two new intercalates of tris[4-(pyridin-4-yl)phenyl]amine (TPPA) with zirconium hydrogen phosphate and zirconium 4-sulfophenylphosphonate having formulae Zr(HPO_4)_2·0.21(C_(33)H_(24)N_4)·2.5H_2O and Zr(HO_3SC_6H_4PO_3)_(1.3)(C_6H_5PO_3)_(0.7)·0.35(C_(33)H_(24)N_4)·2.5H_2O were prepared and characterized by thermogravimetry, IR spectroscopy, and powder X-ray diffraction. The TPPA molecule has been selected as a model tripodal push–pull system with three peripheral basic centers that may undergo protonation. Their protonation/quaternization afforded HTPPA/MeTPPA molecules with enhanced intramolecular chargetransfer (ICT), which has been documented by electrochemical measurements, UV-Vis spectra and calculated properties such as the HOMO/LUMO levels and the first and second hyperpolarizabilities. Intercalation of TPPA into layered zirconium hydrogen phosphate and zirconium 4-sulfophenylphosphonate led to its significant organization and protonation as shown by the IR spectra. From the powder X-ray data we can deduce that the TPPA molecules are placed in the interlayer space of both hosts by anchoring two peripheral nitrogen atoms to one host layer and the opposite pyridine-4-yl terminus to the other neighboring host layer. In zirconium 4-sulfophenylphosphonate, the TPPA molecules are oriented perpendicularly, while in zirconium phosphate these molecules are slanted with respect to the layers of the host. On dehydration by heating, the interlayer distance of the intercalate decreases, which indicates a further slanting of the TPPA molecules. It follows from the UV-Vis spectra that TPPA is present in both intercalates in an equilibrium of protonated and non-protonated forms. The described materials represent the first case when a tripodal push–pull system was incorporated into a system with restricted geometry with the aim to influence its optical properties.
机译:三[4-(吡啶-4-基)苯基]胺(TPPA)与磷酸氢锆和4-磺基苯基膦酸锆的两个新的式Zr(HPO_4)_2·0.21(C_(33)H_(24)N_4)的嵌入物·制备2.5H_2O和Zr(HO_3SC_6H_4PO_3)_(1.3)(C_6H_5PO_3)_(0.7)·0.35(C_(33)H_(24)N_4)·2.5H_2O并通过热重分析,红外光谱和粉末X射线表征衍射。 TPPA分子已被选为三脚架推拉系统的模型,该系统具有三个可能发生质子化的外围基本中心。他们的质子化/季铵化为HTPPA / MeTPPA分子提供了增强的分子内电荷转移(ICT),这已通过电化学测量,UV-Vis光谱和计算出的特性(如HOMO / LUMO水平以及第一和第二超极化率)进行了证明。 TPPA插入层状磷酸氢锆和4-磺基苯基膦酸锆中导致其明显的组织和质子化,如红外光谱所示。根据粉末X射线数据,我们可以推断出TPPA分子是通过将两个外围氮原子固定在一个主体层上,而相反的吡啶-4-基末端固定在另一个相邻主体层上而放置在两个主体的层间空间中的。在4-磺基苯基膦酸锆中,TPPA分子垂直定向,而在磷酸锆中,这些分子相对于主体层倾斜。通过加热脱水时,插层的层间距离减小,这表明TPPA分子进一步倾斜。从UV-Vis光谱得出,TPPA以质子化和非质子化形式的平衡存在于两种插层中。所描述的材料代表了将三脚架推挽系统并入几何形状受限的系统中以影响其光学特性的第一种情况。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号