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十六烷基氯化吡啶鎓在克拉夫特转变中的亚稳结晶片层

Metastable crystalline lamella of cetylpyridinium chloride in the Krafft transition.

作者信息

Sasaki Shigeo

机构信息

Department of Chemistry, Faculty of Sciences Faculty of Science, Kyushu University, 33 Hakozaki, Higashi ku, Fukuoka 812, Japan.

出版信息

J Phys Chem B. 2007 Mar 15;111(10):2473-6. doi: 10.1021/jp066614t. Epub 2007 Feb 16.

Abstract

The metastable crystalline lamella was found in the Krafft transition of aqueous cetylpyridinium chloride (CPC) solutions. Temperature-dependent profiles of small-angle X-ray scattering (SAXS) for the CPC solution incubated for 10 min at 5 degrees C exhibited the metastable lamella structure with a lattice spacing of dL = 3.19 nm at temperatures below 12 degrees C and the stable lamella structure with a lattice spacing of dL = 2.85 nm at temperatures between 12 and 19 degrees C. The former lamella structure, however, was not observed in the temperature scanning SAXS profiles of the CPC solution incubated for 24 h at 5 degrees C. The latter lamella structure observed in the SAXS profile mentioned above started melting at 18 degrees C. The electric conductance change of the CPC solution with a time elapsed after dropping the temperature showed the existence of the temperature-dependent induction period in the Krafft transition, indicating high activation energies for the transition. In the differential scanning calorimetry measurements over temperatures ranging from 5 to 30 degrees C, a single endothermic enthalpy peak at 19 degrees C observed for the CPC solution incubated at 5 degrees C for a longer period than 6 h was split into double peaks at 14 and 19 degrees C when the same solution was incubated at 5 degrees C for a shorter period than 6 h. The observed calorimetric behavior is explained by the existence of the metastable crystalline state that grows faster and melts at a lower melting temperature than the stable crystalline state.

摘要

在十六烷基氯化吡啶(CPC)水溶液的克拉夫特转变中发现了亚稳结晶薄片。在5℃下孵育10分钟的CPC溶液的小角X射线散射(SAXS)温度依赖性图谱显示,在低于12℃的温度下,具有晶格间距dL = 3.19nm的亚稳薄片结构;在12至19℃之间的温度下,具有晶格间距dL = 2.85nm的稳定薄片结构。然而,在5℃下孵育24小时的CPC溶液的温度扫描SAXS图谱中未观察到前一种薄片结构。上述SAXS图谱中观察到的后一种薄片结构在18℃开始熔化。CPC溶液在降温后电导率随时间的变化表明,克拉夫特转变中存在温度依赖性诱导期,这表明该转变具有高活化能。在5至30℃的温度范围内进行的差示扫描量热法测量中,对于在5℃下孵育超过6小时的CPC溶液,在19℃观察到的单个吸热焓峰,当相同溶液在5℃下孵育少于6小时时,在14℃和19℃分裂为双峰。观察到的量热行为可以通过存在亚稳结晶态来解释,该亚稳结晶态比稳定结晶态生长更快且在更低的熔化温度下熔化。

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