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通过热聚合制备的新型共轭亚麻籽油-苯乙烯-二乙烯基苯共聚物。1. 单体浓度对结构和性能的影响。

Novel conjugated linseed oil-styrene-divinylbenzene copolymers prepared by thermal polymerization. 1. Effect of monomer concentration on the structure and properties.

作者信息

Kundu Patit P, Larock Richard C

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Biomacromolecules. 2005 Mar-Apr;6(2):797-806. doi: 10.1021/bm049429z.

Abstract

A variety of novel opaque, white polymers ranging from rubbery materials to tough and rigid plastics have been prepared by the thermal polymerization at 85-160 degrees C of varying amounts of 87% conjugated linseed oil, styrene, and divinylbenzene. Gelation of the reactants typically occurs at temperatures higher than 120 degrees C, and fully cured thermosets are obtained after postcuring at 160 degrees C. The fully cured thermosets have been determined by Soxhlet extraction to contain approximately 35-85% cross-linked materials. The microcomposition of these polymers, as determined by 1H NMR spectroscopy, indicates that the cross-linked materials are composed of both soft oily and hard aromatic phases. After solvent extraction, the insoluble materials exhibit nanopores well distributed throughout the polymer matrixes. Dynamic mechanical analysis of these polymers indicates that they are phase separated with a soft rubbery phase having a sharp glass transition temperature of -50 degrees C and a hard brittle plastic phase with a broadened glass transition temperature of 70-120 degrees C. These polymers possess cross-link densities of 0.15-2.41 x 10(4) mol/m3, compressive Young's moduli of 12-438 MPa, and compressive strengths of 2-27 MPa. These materials are thermally stable below 350 degrees C and exhibit a major thermal degradation of 72-90% at 493-500 degrees C.

摘要

通过在85 - 160摄氏度下对不同比例的87%共轭亚麻籽油、苯乙烯和二乙烯基苯进行热聚合,制备了多种新型不透明白色聚合物,其范围从橡胶状材料到坚韧的刚性塑料。反应物的凝胶化通常发生在高于120摄氏度的温度下,在160摄氏度后固化后可获得完全固化的热固性材料。通过索氏提取法测定,完全固化的热固性材料含有约35 - 85%的交联材料。通过1H NMR光谱测定,这些聚合物的微观组成表明交联材料由软质油性相和硬质芳香相组成。溶剂萃取后,不溶性材料呈现出均匀分布在聚合物基体中的纳米孔。对这些聚合物的动态力学分析表明它们发生了相分离,其中软质橡胶相具有-50摄氏度的尖锐玻璃化转变温度,硬质脆性塑料相具有70 - 120摄氏度的变宽玻璃化转变温度。这些聚合物的交联密度为0.15 - 2.41×10(4) mol/m3,压缩杨氏模量为12 - 438 MPa,压缩强度为2 - 27 MPa。这些材料在350摄氏度以下具有热稳定性,在493 - 500摄氏度时发生72 - 90%的主要热降解。

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