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Heat Capacity Study of Isotactic Polystyrene:Dual Reversible Crystal Melting and Relaxation of Rigid Amorphous Fraction

机译:全同立构聚苯乙烯的热容量研究:双可逆晶体熔融和刚性无定形部分的弛豫

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摘要

Isotactic polystyrene (IPS) is demonstrated to have unique thermal behavior, showing dual reversible crystal melting and irreversible enthalpic relaxation of its rigid amorphous fraction (RAF). Quasi-isothermal temperature-modulated differential scanning calorimetry (TMDSC) and standard DSC were used to study the heat capacity of cold-crystallized iPS. IPS shows two or three endotherms depending upon cold crystallization temperature, T_c. Crystal melting causes the higher temperature endotherm(s), and under quasi-isothermal conditions, we report for the first time observation of dual locally reversible melting endotherms. Quasi-isothermal TMDSC shows that the RAF is established at the crystallization temperature in iPS. Furthermore, we show that the lowest temperature endothermic peak, called the annealing peak, represents the transition of the RAF. For cold-crystallized iPS the annealing peak is an irreversible, enthalpy-involved relaxation of RAF, which transforms solidlike RAF into liquidlike mobile amorphous fraction. Depending upon T_c, RAF may be the sole contributor to the lowest temperature endotherm. To accommodate the relaxation of RAF, the experimentally determined heat capacity should be written in terms of the underlying linear baseline heat capacity plus the enthalpic terms relating to crystal melting and to relaxation of RAF.
机译:等规聚苯乙烯(IPS)被证明具有独特的热行为,显示出其刚性无定形部分(RAF)具有双重可逆的晶体熔化和不可逆的焓弛豫。使用准等温温度调制差示扫描量热法(TMDSC)和标准DSC来研究冷结晶iPS的热容。 IPS根据冷结晶温度T_c显示两个或三个吸热峰。晶体熔化会导致较高的吸热峰,在准等温条件下,我们首次报道了双重局部可逆的熔化吸热峰。准等温TMDSC表明RAF在iPS的结晶温度下建立。此外,我们显示了最低的吸热峰,称为退火峰,代表了RAF的转变。对于冷结晶的iPS,退火峰是RAF不可逆的,涉及焓的弛豫,它将固体RAF转变为液体可移动的无定形馏分。取决于T_c,RAF可能是导致最低温度吸热的唯一因素。为了适应RAF的松弛,实验确定的热容量应根据基本线性基线热容量以及与晶体熔化和RAF松弛相关的焓项来表示。

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  • 来源
    《Macromolecules》 |2004年第8期|共10页
  • 作者

    Hui Xu; Peggy Cebe;

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  • 正文语种 eng
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  • 入库时间 2022-08-19 13:20:07

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