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1.
采用绝热量热和热分析技术研究了8-羟基喹啉的热力学性质。用精密绝热量热仪测定了8-羟基喹啉在78 K ~370 K 温区的低温热容。根据实验测定的热容数据计算出了热容拟合方程及热力学函数,得到该物质的熔点、摩尔熔化焓和摩尔熔化熵分别是(345.74±0.15) K、(13.93±0.11) kJ· mol-1 和 (40.26±0.33) J·K-1·mol-1。 根据热力学函数关系式计算了其在78 K ~370 K 温区每隔5 K 的热力学函数 和 。通过部分熔化实验计算出该样品及其绝对纯物质的熔化温度分别是 345.601 K和345.761 K。根据Van’t Hoff方程计算出该样品纯度的摩尔分数为 0.9978。用DSC技术进一步考察了该物质的热稳定性。  相似文献   

2.
正二十二烷醇的热力学性质   总被引:1,自引:0,他引:1  
用精密自动绝热量热仪测定了广谱抗病毒药物正二十二烷醇在78-400 K温区的热容. 根据实验测定的热容数据, 用最小二乘法拟合计算出热容对温度的多项式方程, 得到其相变温度、相变焓、相变熵分别为340.844 K、85.07 kJ·mol-1、249.6 J·K-1·mol-1. 根据热力学函数关系式计算了其在80-400 K温区每隔5 K的热力学函数[HT-H298.15]和[ST-298.15]. 用DSC、TG热分析技术进一步考查了该物质在400-900 K的热稳定性.  相似文献   

3.
用精密自动绝热量热计测定了2-噻吩乙酸在78~343 K温区内的摩尔热容. 实验结果表明, 在78~314和337~343 K温区内, 该化合物无相变及其他热异常现象发生, 将实验数据拟合得到了该化合物热容随温度变化的多项式方程; 在314~337 K温区内, 该物质发生固-液熔化相变, 其熔化温度、熔化焓、熔化熵及样品纯度分别确定为: 335.745 K, 16.260 kJ•mol-1, 48.415 J•K-1•mol-1和98.555%. 根据热力学函数关系式, 由热容数据计算出了2-噻吩乙酸在80~340 K温区内相对于标准参考温度298.15 K的热力学函数值.  相似文献   

4.
利用精密自动绝热热量计直接测定了配合物Zn(Met)SO4·H2O(s)在78~370K温区的摩尔热容.通过热容曲线的解析得到该配合物的起始脱水温度为T0=329.50K.将该温区的摩尔热容实验值用最小二乘法拟合得到摩尔热容(Cp,m)对温度(T)的多项式方程,并且在此基础上计算出了它的舒平热容值和各种热力学函数值.依据Hess定律,通过设计热化学循环,选择体积为100cm3、浓度为2mol·L-1的盐酸作为量热溶剂,利用等温环境溶解-反应热量计,测定和推算出该配合物的标准摩尔生成焓为?fHms=-(2069.30±0.74)kJ·mol-1.  相似文献   

5.
邸友莹  李爽  孟霜鹤  谭志诚  屈松生 《化学学报》2000,58(11):1380-1385
通过精密自动绝热热量计测定了2-碘-3-硝基甲苯(C~7H~6INO~2)在79~373K温区的摩尔热容。实验结果表明,这个化合物在331~340K温度区间有一个固-液熔化相变,其熔化温度、摩尔熔化焓、摩尔熔化熵以及该样品的化学纯度分别为:(339.311±0.13)J·mol^-^1·K^-^1和99.73%。用热容多项式议程进行数值积分获得了该物质在298.15~370K温区每隔5K的热力学函数值。用DSC分析对它的固-液相变过程作了进一步的研究。  相似文献   

6.
通过低温量热和热分析方法,测定了N-对甲基苯基-N′-(2-吡啶基)脲(以下简称NPMPN′2PU)的低温热容和热力学性质.通过对NPMPN′2PU进行低温量热,得到了NPMPN′2PU在80~370K温区的热容曲线,热容曲线光滑,没有任何热异常现象,由此实验热容数据计算出NPMPN′2PU在这段温区内的热力学数据.从DSC实验结果发现,NPMPN′2PU熔化峰值出现在173.86℃,熔化焓为204.45kJ·mol-1.紧接熔化峰后NPMPN′2PU开始分解,分解峰只有一个,分解峰值温度为226.11℃.TG和DTG的实验结果表明,NPMPN′2PU失重的峰值为227.2℃,这些结果与DSC实验结果吻合.  相似文献   

7.
选择分析纯邻苯二甲酸和浓氨水为反应物,合成了邻苯二甲酸氢铵.利用元素分析、FTIR和X-射线粉末衍射技术表征了它的组成和结构.用精密自动绝热热量计测定了它在78~400 K温区的摩尔热容,将该温区的摩尔热容实验值用最小二乘法拟合,得到摩尔热容(Cp,m)随折合温度(X)变化的多项式方程,利用此方程计算出该温区内每隔5 K的舒平热容值和相对于298.15K的各种热力学函数值.另外,依据Hess定律,通过设计合理的热化学循环,利用等温环境溶解-反应热量计分别测定所设计反应的反应物和产物在所选溶剂中的溶解焓,得到该反应的反应焓为△rHθm=(1.787±0.514)kJ·mol-1.最后,利用此反应焓和反应中其他物质的热力学数据计算出邻苯二甲酸氢铵的标准摩尔生成焓为:△fHθm[NH4(C8H5O4),s]=-(912.953±0.628)kJ·mol-1.  相似文献   

8.
邢军  谭志诚  邸友莹  孙晓红  孙立贤  张涛 《化学学报》2004,62(24):2415-2420
用精密自动绝热量热计测定了自行合成并提纯的4,6-二甲氧基-2-嘧啶氨基甲酸甲酯在80~380 K温区的摩尔热容.实验结果表明,在345~360 K温区,该化合物有一固-液熔化过程.经两次重复测定,得其熔化温度、摩尔熔化焓以及熔化熵分别为:(357.201±0.080) K, (26.289±0.029) kJ·mol-1和(73.597±0.070) J·mol-1·K-1.通过分步熔化法得到该物质绝对纯样品的熔点为357.449 K.根据热力学关系和热容数据,计算出了该化合物相对于标准参考温度298.15 K的热力学函数.用DSC和TG热分析技术在300~500 K温区对该物质的热力学性质作了进一步研究,得到与绝热量热法一致的固-液熔化过程热力学参数,并得到该化合物蒸发过程的热力学参数:沸点为488.06 K,摩尔蒸发焓为81.73 kJ·mol-1.  相似文献   

9.
通过低温量热和热分析方法,测定了N-对甲基苯基-N'-(2-吡啶基)脲(以下简称NPMPN'2PU)的低温热容和热力学性质.通过对NPMPN'2PU进行低温量热,得到了NPMPN'2PU在80~370K温区的热容曲线,热容曲线光滑,没有任何热异常现象,由此实验热容数据计算出NPMPN'2PU在这段温区内的热力学数据.从DSC实验结果发现,NPMPN'2PU熔化峰值出现在173.86℃,熔化焓为204.45kJ·mol-1.紧接熔化峰后NPMPN'2PU开始分解,分解峰只有一个,分解峰值温度为226.11℃.TG和DTG的实验结果表明,NPMPN'2PU失重的峰值为227.2℃,这些结果与DSC实验结果吻合.  相似文献   

10.
用精密自动绝热量热计测定了4-硝基苯甲醇(4-NBA)在78 ~ 396 K温区的摩尔热容。其熔化温度、摩尔熔化焓及摩尔熔化熵分别为:(336.426 ± 0.088) K, (20.97 ± 0.13) kJ×mol-1 和 (57.24 ± 0.36) J×K-1×mol-1.根据热力学函数关系式,从热容值计算出了该物质在80 ~ 400 K温区的热力学函数值 [HT - H298.15 K] 和[ST - S298.15 K]. 用精密氧弹燃烧量热计测定了该物质在T=298.15 K的恒容燃烧能和标准摩尔燃烧焓分别为 (C7H7NO3, s)=- ( 3549.11 ± 1.47 ) kJ×mol-1 和 (C7H7NO3, s)=- ( 3548.49 ± 1.47 ) kJ×mol-1. 利用标准摩尔燃烧焓和其他辅助热力学数据通过盖斯热化学循环, 计算出了该物质标准摩尔生成焓 (C7H7NO3, s)=- (206.49 ± 2.52) kJ×mol-1 .  相似文献   

11.
The molar heat capacities of an aqueous Li2B4O7 solution were measured with a precision automated adiabatic calorimeter in the temperature range from 80 to 356 K at a concentration of 0.3492 mol⋅kg−1. The occurrence of a phase transition was determined based on the changes in the curve of the heat capacity with temperature. A phase transition was observed at 271.72 K corresponding to the solid-liquid phase transition; the enthalpy and entropy of the phase transition were evaluated to be Δ H m = 4.110 kJ⋅mol−1 and Δ S m = 15.13 J⋅K−1⋅mol−1, respectively. Using polynomial equations and thermodynamic relationship, the thermodynamic functions [H T H 298.15] and [S T S 298.15] of the aqueous Li2B4O7 solution relative to 298.15 K were calculated in temperature range 80 to 355 K at intervals of 5 K. Values of the relative apparent molar heat capacities of the aqueous Li2B4O7 solution, C p, were calculated at every 5 K in temperature range from 80 to 355 K from the experimental heat capacities of the solution and the heat capacities of pure water.  相似文献   

12.
Lü Yinfeng 《中国化学》2010,28(4):521-530
The crystal structure and composition of (C12H25NH3)2ZnCl4(s) were characterized by chemical and elemental analysis, X‐ray powder diffraction technique and X‐ray crystallography. The lattice energy of the title compound was calculated to be UPOT=888.82 kJ·mol?1. Low temperature heat capacities of the title compound have been measured by a precision automated adiabatic calorimeter over the temperature range from 80 to 403 K. An obvious solid to solid phase transition occurred in the heat capacity curve, and the peak temperature, molar enthalpy and molar entropy of the phase transition of the compound were determined to be Ttrs= (364.02±0.03) K, (trsHm= (77.567±0.341) kJ·mol?1, and (trsSm= (213.77±1.17) J·K?1·mol?1, respectively. Experimental molar heat capacities before and after the phase transition were respectively fitted to two polynomial equations. The smoothed molar heat capacities and fundamental thermodynamic functions of the sample relative to the standard reference temperature 298.15 K were calculated and tabulated at an interval of 5 K.  相似文献   

13.
利用精密绝热热量仪测定了化合物配合物Zn(Met)3(NO3)2·H2O (s) (Met=L-α-蛋氨酸)在78-371 K温区的摩尔热容. 通过热容曲线解析, 得到了该配合物的起始脱水温度为TD=325.10 K. 将该温区的摩尔热容实验值用最小二乘法拟合得到了摩尔热容(Cp)对约化温度(T)的多项式方程, 由此计算得到了配合物的舒平热容值和热力学函数值. 基于设计的热化学循环, 选择100 mL of 2 mol·L-1 HCl为量热溶剂, 利用等温环境溶解-反应热量计, 得到了298.15 K配合物的标准摩尔生成焓为ΔfHm0[Zn(Met)3(NO3)2·H2O(s),s]=-(1472.65±0.76) J·mol-1.  相似文献   

14.
Rare-earth perchlorate complex coordinated with glycine [Nd2(Gly)6(H2O)4](ClO4)6·5H2O was synthesized and its structure was characterized by using thermogravimetric analysis (TG), differential thermal analysis (DTA), chemical analysis and elementary analysis. Its purity was 99.90%. Heat capacity measurement was carried out with a high-precision fully-automatic adiabatic calorimeter over the temperature range from 78 to 369 K. A solid-solid phase transformation peak was observed at 256.97 K, with the enthalpy and entropy of the phase transformation process are 4.438 kJ mol−1 and 17.270 J K−1 mol−1, respectively. There is a big dehydrated peak appears at 330 K, its decomposition temperature, decomposition enthalpy and entropy are 320.606 K, 41.364 kJ mol−1 and 129.018 J K−1 mol−1, respectively. The polynomial equations of heat capacity of this compound in different temperature ranges have been fitted. The standard enthalpy of formation was determined to be −8023.002 kJ mol−1 with isoperibol reaction calorimeter at 298.15 K.  相似文献   

15.
A novel compound‐monohydrated nickel nicotinate was synthesized by the method of room temperature solid phase synthesis and ball grinder. FTIR, chemical and elemental analysis, TG/DTG, and X‐ray powder diffraction technique were applied to characterize the structure and composition of the coordination compound. Low‐temperature heat capacities of the solid coordination compound have been measured by a precision automated adiabatic calorimeter over the temperature range from 78 to 386 K. A solid‐solid phase transition occurred in the temperature range of 328–358 K in the heat capacity curve, and the peak temperature, the molar enthalpy and molar entropy of the phase transition were determined to be Ttrs=(356.759±0.697) K, ΔtrsHm=(13.650±0.408) kJ· mol?1, and ΔtrsSm= (38.279±0.086) J·K?1·mol?1, respectively. The experimental values of the molar heat capacities in the temperature ranges of 78–328 K and 358–386 K were fitted to two polynomials, respectively. The polynomial fitted values of the molar heat capacities and fundamental thermodynamic functions of the sample relative to the standard reference temperature 298.15 K were calculated and tabulated at the intervals of 5 K.  相似文献   

16.
Low-temperature heat capacities of octahydrated barium dihydroxide, Ba(OH)2·8H2O(s), were measured by a precision automated adiabatic calorimeter in the temperature range from T=78 to 370 K. An obvious endothermic process took place in the temperature range of 345-356 K. The peak in the heat capacity curve was correspondent to the sum of both the fusion and the first thermal decomposition or dehydration. The experimental molar heat capacifies in the temperature ranges of 78-345 K and 356-369 K were fitted to two polynomials. The peak temperature, molar enthalpy and entropy of the phase change have been determined to be (355.007±0.076) K, (73.506±0.011) kJ·ol^-1 and (207.140±0.074) J·K^-1·mol^-1, respectively, by three series of repeated heat capacity measurements in the temperature region of 298-370 K. The thermodynamic functions, (Hr-H298.15 k )and (Sr-S298.15k), of the compound have been calculated by the numerical integral of the two heat-eapacity polynomials. In addition, DSC and TG-DTG techniques were used for the further study of thermal behavior of the compound. The latent heat of the phase change became into a value larger than that of the normal compound because the melfing process of the compound must be accompanied by the thermal decomposition or dehydration of 71-120.  相似文献   

17.
合成了稀土(钬, Ho)-氨基酸(甘氨酸, C2H5O2N)二元配合物Ho(NO3)3(C2H5O2N)4·H2O, 并且通过化学分析、元素分析和红外(IR)光谱对配合物进行了表征. 用高精度全自动绝热量热仪, 测定了该配合物在80-390 K温度区间的定压摩尔热容(Cp,m). 利用实验测定的热容数据, 采用最小二乘法, 将热容曲线上热容峰以外的两段平滑区的摩尔热容对折合温度进行拟合, 建立了热容随折合温度变化的多项式方程. 根据热容与焓、熵的热力学关系,计算出了配合物在80-390 K温度区间内,每隔5 K,相对于298.15 K的摩尔热力学函数(HT,m-H298.15,m)和(ST,m-S298.15,m). 通过热容曲线分析, 计算出了350 K附近转变过程的焓变(ΔtrsHm)和熵变(ΔtrsSm). 用差示扫描量热法(DSC)测定了配合物的热稳定性.  相似文献   

18.
近几十年来,烟酸盐类化合物或配合物由于优越的吸收率高和无毒副作用等特点使其在化妆品、药品和食品等领域作为营养添加剂具有重要应用前景。然而,这类化合物的基础热力学数据极其缺乏,从而限制了这类化合物的理论研究和应用开发的深入开展。为此,本论文利用室温固相合成方法和球磨技术合成了一种新化合物Cu(Nic)2•H2O(s),利用化学分析、元素分析、FTIR和X-射线粉末衍射技术表征了它的结构和组成,利用精密自动绝热热量计准确地测量了它在78-400 K温区的摩尔热容。在热容曲线的T = 326-346 K温区观察到一个明显的固-液相变过程。利用相变温区三次重复实验热容的测量结果确定了此相变过程的峰温、相变焓和相变熵分别为:Tfus=(341.290 ±0.873) K, DfusHm=(13.582±0.012) kJ×mol-1, DfusSm=(39.797±0.067) J×K-1×mol-1。通过最小二乘法将相变前和相变后的热容实验值分别拟合成了热容对温度的两个多项式方程。通过热容多项式方程的数值积分,得到了这个化合物的舒平热容值和相对于298.15 K的各种热力学函数值,并且将每隔5 K的热力学函数值列成了表格。  相似文献   

19.
A complex of neodymium perchloric acid coordinated with L-glutamic acid and imidazole, [Nd(Glu)(H2O)5(Im)3](ClO4)6·2H2O was synthesized and characterized by IR and elements analysis for the first time. The thermodynamic properties of the complex were studied with an automatic adiabatic calorimeter and differential scanning calorimetry (DSC). Glass transition and phase transition were discovered at 221.83 and 245.45 K, respectively. The glass transition was interpreted as a freezing-in phenomenon of the reorientational motion of ClO4 ions and the phase transition was attributed to the orientational order/disorder process of ClO4 ions. The heat capacities of the complex were measured with the automatic adiabatic calorimeter and the thermodynamic functions [H T-H 298.15] and [S T-S 298.15] were derived in the temperature range from 80 to 390 K with temperature interval of 5 K. Thermal decomposition behavior of the complex in nitrogen atmosphere was studied by thermogravimetric (TG) analysis and differential scanning calorimetry (DSC).  相似文献   

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