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首页> 外文期刊>RSC Advances >Self-assembled structure and relaxation dynamics of diblock copolymers made of polybutadiene and styrene/butadiene rubber
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Self-assembled structure and relaxation dynamics of diblock copolymers made of polybutadiene and styrene/butadiene rubber

机译:由聚丁二烯和苯乙烯/丁二烯橡胶制成的二嵌段共聚物的自组装结构和弛豫动力学

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摘要

Structural features and relaxation dynamics of two series of crosslinked poly(butadiene- block -(styrene- stat -butadiene)) diblock copolymers with systematically varied segregation strength and morphology are studied by atomic force microscopy (AFM) and dynamic shear measurements. Series I contains symmetric diblock copolymers with variable styrene content in the SBR block. In Series II the volume fraction of the SBR block Φ _(SBR) is varied while keeping the styrene content in the SBR block almost constant. AFM results indicate that symmetric diblock copolymers of Series I with styrene contents ≥ 35 mol% in the SBR block are well microphase-separated in accordance with thermodynamic models using an effective interaction parameter χ _(eff) . The samples of Series II with volume fractions in the range 30 vol% ≤ Φ _(SBR) ≤ 60 vol% show cylindrical and lamellar morphologies as expected based on thermodynamic equilibrium concepts. This shows that the diblock copolymer morphologies existing at the crosslinking temperature are fixed but not significantly altered by the vulcanization procedure. Depending on the segregation of PB and SBR blocks in the crosslinked state, there are three different relaxation scenarios: (i) two well separated dynamic glass transitions α _(PB) and α _(SBR) for strongly segregated samples consisting mainly of two pure phases, PB and SBR, (ii) significant relaxation modes located between the α relaxation processes of pure PB and SBR for weakly segregated systems with a lot of interfacial material and (iii) one single dynamic glass transition α at intermediate temperatures for practically miscible systems. These three situations are explained based on the chemical composition of subsystems having typical dimensions of about 1–3 nm consistent with the characteristic lengths ξ _(α) of the glass transition quantifying the dimensions of cooperative rearranging regions (CRRs).
机译:通过原子力显微镜(AFM)和动态剪切测量,研究了两系列交联聚(丁二烯 - 甲基丁二烯))二嵌段共聚物的两系列交联聚(丁二烯 - (苯乙烯 - 嵌段 - (苯乙烯 - 甲醛))二嵌段共聚物的二嵌段共聚物。系列I含有在SBR块中具有可变苯乙烯含量的对称二嵌段共聚物。在串联II中,改变SBR块φ→(SBR)的体积分数,同时保持SBR块中的苯乙烯含量几乎恒定。 AFM结果表明,SBR块中苯乙烯含量≥35mol%的对称二嵌段共聚物≥35mol%,根据使用有效交互参数χ_(eff),根据热力学模型进行井微相分离。基于热力学平衡概念的预期,体积级分的II系列II系列的样品≤60Vol%的样品。这表明在交联温度下存在的二嵌段共聚物形态是固定的,但不能显着改变硫化过程。取决于在交联状态下PB和SBR块的分离,有三种不同的松弛场景:(i)两个良好分离的动态玻璃转换α_(Pb)和α_(SBR),用于强烈分离的样品,主要由两个纯度组成阶段,Pb和SBR,(ii)位于纯Pb和SBR的α松弛过程之间的显着弛豫模式,用于具有大量界面材料的弱分离系统和(iii)在实际上混溶系统中间温度下的一个单一动态玻璃化转换α 。基于具有约1-3nm的典型尺寸的子系统的化学组成来解释这三种情况,该尺寸与玻璃化转变的特征长度≥(α)量化的玻璃化转变的特征长度≥(α)量化了合作重排区域(CRRS)的尺寸。

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