用三甲基硅酸三酯进行天然纯天然胶乳环化反应的活化能和热力学参数

IF 1.4 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Elastomers and Plastics Pub Date : 2009-03-01 DOI:10.1177/0095244308092437
S. Riyajan
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引用次数: 7

摘要

天然橡胶(NR)的性能是比较有趣的,除了一些性能需要改进。环合反应是改性NR制热塑性弹性体的一个有趣反应。研究了在不同温度和时间下,三甲基硅基-三氟甲烷磺酸盐或三甲基硅基三酸酯(TMSOTF)在乳胶相中有效地进行脱蛋白天然橡胶(DPNR)或纯化NR乳胶的动力学环化。环化产物经核磁共振波谱和二维核磁共振确证。对环化动力学进行了研究。发现DPNR的环化程度是环化条件的函数。根据95%的回归,在100℃下,反应速率常数(k)为200 (s-1), DPNR胶乳的环化活化能为147.66kJ/mol。得到了DPNR环化反应的焓、熵和自由能活化度分别为144.6kJ/mol、-269.11J/mol和246.9kJ/mol的热力学参数。本研究得到的环化动力学和热力学参数表明,工艺温度的升高会提高环化的形成速度。
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Activation Energy and Thermodynamic Parameters of Cyclization in Purified Natural Rubber Latex Using a Trimethyl Silyl Triflate
The property of natural rubber (NR) is more interesting, except for some properties which need to improve. The cyclization reaction is an interesting reaction for modified NR to thermoplastic elastomer. The kinetic cyclization of deproteinized natural rubber (DPNR) or purified NR latex effectively performed in latex phase by using trimethylsilyl-trifluoromethane sulphonate or trimethyl silyl triflate (TMSOTF) is studied at various temperatures and times. The cyclized products are confirmed by NMR spectroscopies including one and 2D NMR. The kinetic of cyclization is investigated. It is found that the degree of cyclization in DPNR is a function of cyclization conditions. The rate constant (k) is 200 (s-1) at 100°C based on 95% of regression and the activation energy of cyclization in DPNR latex is 147.66kJ/mol. Some thermodynamic parameters: enthalpy, entropy, and free energy activation of 144.6kJ/mole, -269.11J/mole, and 246.9kJ/mole, respectively, are obtained for the cyclization of DPNR. The kinetic and thermodynamic parameters of cyclization obtained from this study indicate that an increase in the process temperature would increase the rate of cyclization formation.
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来源期刊
Journal of Elastomers and Plastics
Journal of Elastomers and Plastics 工程技术-材料科学:综合
CiteScore
3.30
自引率
5.90%
发文量
41
审稿时长
6 months
期刊介绍: The Journal of Elastomers and Plastics is a high quality peer-reviewed journal which publishes original research on the development and marketing of elastomers and plastics and the area in between where the characteristics of both extremes are apparent. The journal covers: advances in chemistry, processing, properties and applications; new information on thermoplastic elastomers, reinforced elastomers, natural rubbers, blends and alloys, and fillers and additives.
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