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首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Polymorphism, crystal-crystal and liquid crystalline thermotropic phase transition behaviour of even chain length zinc(II) n-alkanoates
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Polymorphism, crystal-crystal and liquid crystalline thermotropic phase transition behaviour of even chain length zinc(II) n-alkanoates

机译:链长均匀的正链烷酸锌(II)的多态性,晶体-液晶和液晶的热致相变行为

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摘要

The thermotropic phase behaviour of a homologous series of even chain length polymeric zinc(II) n-alkanoates, Zn(C_nH_(2n-1) O_2)_2 (ZnC_(4 20)) has been studied by means of differential scanning calorimetry (DSC) and temperature variation polarising light microscopy. The compounds exhibit both enantiotropic and monotropic phase behaviour on heating to the isotropic liquid and on cooling back to the room temperature solid, as seen from the following phase sequences: ZnC_(4-12), Lamellar Crystal <--> Crystal 1I<--> Crystal II <--> Isotropic Me ZnC_(14-16), Lamellar Crystal <--> Crystal I <--> Isotropic Liquid; ZnC_(18-20), Lamellar Crystal→ Isotropic Liquid, Lamellar Crystal ← Smectic C ←Isotropic Liquid. The total enthalpy and entropy change for melting increase linearly with chain length and are higher than expected for complete fusion of alkyl chains suggesting that the step-wise melting process involves fusion of alkyl chains and changes in electrostatic interactions in the polar region of the molecule. The phase diagrams show that phase sequences for first and second heating cycles are almost indistinguishable, where the lamellar crystal is most stable for the long chain length homologues. In addition, there is a stable mesomorphic region over a narrow temperature range, at high temperatures for the long chain length compounds. Polymorphism is exhibited and is dependent on the method of preparation.
机译:已通过差示扫描量热法(DSC)研究了一系列偶数链长的聚合正链烷酸锌(II)同源序列Zn(C_nH_(2n-1)O_2)_2(ZnC_(4 20))的热致相行为。 )和温度变化的偏光镜。从以下各相序列可以看出,该化合物在加热至各向同性液体和冷却至室温固体后均表现出对映相和单相相行为:ZnC_(4-12),层状晶体<->晶体1I <- ->晶体II <->各向同性熔体; ZnC_(14-16),层状晶体<->晶体I <->各向同性液体; ZnC_(18-20),层状晶体→各向同性液体,层状晶体←近晶C←各向同性液体。熔化的总焓和熵变化随链长线性增加,并且高于烷基链完全融合的预期,这表明逐步熔化过程涉及烷基链的融合和分子极性区域中静电相互作用的变化。相图表明,第一个和第二个加热循环的相序几乎无法区分,其中层状晶体对于长链长度的同系物最为稳定。另外,对于长链长度的化合物,在高温下在狭窄的温度范围内有一个稳定的介晶区。表现出多态性,并取决于制备方法。

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