Lutz Jean-François, Pfeifer Sebastian, Chanana Munish, Thünemann Andreas F, Bienert Ralf
Fraunhofer Institute for Applied Polymer Research, Geiselbergstrasse 69, 14476 Potsdam, Germany.
Langmuir. 2006 Aug 15;22(17):7411-5. doi: 10.1021/la061382a.
The self-organization of random copolymers composed of a nucleobase monomer (either 1-(4-vinylbenzyl)thymine or 9-(4-vinylbenzyl)adenine) and dodecyl methacrylate (DMA) was studied in dilute chloroform solutions. The balance between the molar fractions of the nucleobase monomer (leading to intermolecular H-bonding) and DMA (soluble moiety in chloroform) in the polymer chains was found to be the parameter that principally influences the self-organization. DMA-rich copolymers are molecularly soluble in chloroform, whereas nucleobase-rich copolymers are insoluble in this solvent. Copolymers possessing an equimolar comonomer composition self-assemble into micrometer-sized particles physically cross-linked by intermolecular H-bonds (either thymine-thymine or adenine-adenine interactions, depending on the studied copolymer). Nevertheless, when mixed together, thymine- and adenine-based colloids fuse into thermodynamically stable microspheres cross linked by adenine-thymine interactions.
研究了由核碱基单体(1-(4-乙烯基苄基)胸腺嘧啶或9-(4-乙烯基苄基)腺嘌呤)和甲基丙烯酸十二酯(DMA)组成的无规共聚物在稀氯仿溶液中的自组装行为。发现聚合物链中核碱基单体(导致分子间氢键形成)和DMA(氯仿中的可溶部分)的摩尔分数之间的平衡是主要影响自组装的参数。富含DMA的共聚物在氯仿中可分子溶解,而富含核碱基的共聚物在该溶剂中不溶。具有等摩尔共聚单体组成的共聚物通过分子间氢键(胸腺嘧啶-胸腺嘧啶或腺嘌呤-腺嘌呤相互作用,取决于所研究的共聚物)物理交联自组装成微米级颗粒。然而,当胸腺嘧啶基和腺嘌呤基胶体混合在一起时,它们会融合成通过腺嘌呤-胸腺嘧啶相互作用交联的热力学稳定微球。