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首页> 外文期刊>Chemistry: A European journal >Elucidating the Structure of the Pm3ˉ n Cubic Phase of Supramolecular Dendrimers through the Modification of their Aliphatic to Aromatic Volume Ratio
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Elucidating the Structure of the Pm3ˉ n Cubic Phase of Supramolecular Dendrimers through the Modification of their Aliphatic to Aromatic Volume Ratio

机译:通过修饰其脂族与芳族体积比来阐明超分子树状聚合物的Pm3ˉn立方相的结构

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The synthesis, and structural and retrostructural analysis of a library of second-generation conical dendrons that self-assemble into spherical supramolecular dendrimers is reported. This library consists of amphiphilic dendrons with n-alkyl groups containing from 4 to 16 carbon atoms. The dendrons containing 6 to 16 carbon atoms in their n-alkyl groups self-assemble into spherical supramolecular dendri- ACHTUNGTRENUNGmers that self-organize in a Pm3 n cubic lattice. The structural and retrostructural analysis of the Pm3ˉ n lattices generated from the supramolecular dendriACHTUNGTRENUNGmers demonstrated that the volume of the aromatic core of the spherical dendrimers is not dependent on the number of carbon atoms from their alkyl groups. This result facilitated the calculation of the average values of the absolute electron density of the aliphatic and aromatic domains of the spherical supramolecular dendrimers. The relative intensity of the higher order diffraction peaks of the Pm3ˉ n lattice increases as the volume of the aliphatic part of the sphere med iated by the number of carbon atoms in the n-alkyl groups decreases. This study demonstrates the maximum increase of the relative intensity of the higher order diffraction peaks of the Pm3ˉ n lattice generated from nonhollow supramolecular dendrimers.
机译:报道了自组装成球形超分子树状大分子的第二代圆锥形树突的文库的合成,结构和逆构分析。该文库由具有含4至16个碳原子的正烷基的两亲树突组成。在其正烷基中含有6至16个碳原子的树枝状分子自组装成球形超分子树枝状ACHTUNGTRENUNGUNGMER,它们在Pm3 n立方晶格中自组织。对由超分子树枝状分子ACHTUNGTRENUNGMER生成的Pm3n晶格的结构和逆向结构分析表明,球形树枝状聚合物的芳香核的体积不取决于其烷基中碳原子的数量。该结果促进了球形超分子树枝状聚合物的脂族和芳族域的绝对电子密度的平均值的计算。 Pm3n n晶格的高阶衍射峰的相对强度随正烷基中碳原子数而介导的球体脂族部分体积的减少而增加。这项研究证明了由非空心超分子树状大分子生成的Pm3 latticen晶格的高阶衍射峰的相对强度的最大增加。

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