首页> 外文期刊>World Journal of Chemical Education >Application of Differential Scanning Calorimetry in an Organic Chemistry Laboratory Course: Development of a Binary Phase Diagram of Cis/Trans-1, 2-Dibenzoylethylene
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Application of Differential Scanning Calorimetry in an Organic Chemistry Laboratory Course: Development of a Binary Phase Diagram of Cis/Trans-1, 2-Dibenzoylethylene

机译:差示扫描量热法在有机化学实验室课程中的应用:顺式/反式-1,2-二苯甲酰基乙烯的二元相图的开发

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In organic chemistry lab it is important to give students hands-on experiences to help them further their understanding of important chemistry topics. Binary phase diagrams incorporate many of these topics into a single graph. Differential Scanning Calorimetry (DSC) has been shown to produce data to make binary phase diagrams for alloys; however, it is more difficult to produce these diagrams using non-metal organic compounds. The purpose of this experiment was to determine if the DSC could be used to give students a challenging, yet doable experiment to prepare a binary phase diagram and determine the eutectic composition for the mixture of cis/trans-1,2-dibenzoylethylene. The conclusions from this work are: (i) The eutectic composition for cis/trans-1,2-dibenzoylethylene is at the weight percent of 30% cis and 70% trans which corresponds to an onset melting temperature of 93.5°C; (ii) as the cis increased from a weight percent of 30% the melt temperature also increased; (iii) as the trans increased from a weight percent of 70% the melt temperature also increased; (iii) the DSC produced sufficient data necessary to develop a binary phase diagram of peak melt temperatures vs the weight percent of the cis isomer; (iv) the DSC could be incorporated into an organic chemistry lab to enhance student’s knowledge of important topics while giving them an experience working with advanced laboratory thermal instruments.
机译:在有机化学实验室中,重要的是要给学生动手实践的经验,以帮助他们进一步了解重要的化学主题。二元相图将许多这些主题合并到一个图中。差示扫描量热法(DSC)已显示出可产生合金二元相图的数据。但是,使用非金属有机化合物生成这些图更加困难。本实验的目的是确定DSC是否可用于为学生提供具有挑战性但可行的实验,以准备二元相图并确定顺式/反式-1,2-二苯甲酰基乙烯混合物的共晶组成。这项工作的结论是:(i)顺式/反式-1,2-二苯甲酰基乙烯的低共熔组合物的重量百分数为顺式30%,反式为70%,相当于起始熔化温度为93.5°C; (ii)随着顺式从30%的重量百分比增加,熔融温度也增加; (iii)随着反式从70%的重量百分比增加,熔体温度也增加; (iii)DSC获得了足够的数据,以建立峰值熔体温度与顺式异构体重量百分比的二元相图; (iv)DSC可以合并到有机化学实验室中,以增强学生对重要主题的知识,同时为他们提供使用先进的实验室热仪器的经验。

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