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1.
在298.15 K下,利用等温环境溶解反应热量计,测定了离子液体[Cnmim][H2PO4] (n= 3, 4, 5, 6) (1-烷基-3-甲基咪唑磷酸盐)在水中不同浓度的摩尔溶解热(ΔsolHm),根据Pitzer电解质溶液理论计算得到了标准摩尔溶解焓(ΔsolHm0)和Pitzer焓参数:βMX(0)L, βMX(1)L,和CϕL,并计算了表观相对摩尔焓。通过推导讨论,得到了离子液体[Cnmim][H2PO4](n= 3, 4, 5, 6)同系物每摩尔亚甲基对标准摩尔溶解焓的贡献。  相似文献   

2.
摘要在298.150 K下, 利用具有恒温环境的溶解反应热量计测定了不同浓度的InCl3摩尔溶解热(ΔsHm), 根据Pitzer理论得到了InCl3的无限稀释摩尔溶解热(ΔsH∞m), 和Pitzer焓参数β(0)LMX及β(1)LMX, 计算了溶质的偏摩尔焓. 讨论了离子和溶剂之间的相互作用. 利用文献中的InCl3的晶格能和氯离子的水化热数据, 得到了InCl3和铟离子的水化热.  相似文献   

3.
在298.15 K下,利用等温环境溶解反应热量计,测定了离子液体[C_nmim][H_2PO_4](n=3,4,5,6)(1-烷基-3-甲基咪唑磷酸盐)在水中不同浓度的摩尔溶解热(?sol Hm),根据Pitzer电解质溶液理论计算得到了标准摩尔溶解焓(?solH_m~0)和Pitzer焓参数:β_(MX)~((0)L)、β_(MX)~((1)L)和C~(ΦL),并计算了表观相对摩尔焓。通过推导讨论,得到了离子液体[C_nmim][H_2PO_4](n=3,4,5,6)同系物每摩尔亚甲基对标准摩尔溶解焓的贡献。  相似文献   

4.
在干燥氩气氛下, 用等摩尔的高纯无水FeCl3和氯化1-甲基-3-乙基咪唑([C2mim][Cl])直接搅拌混合, 制备棕色透明的含过渡金属铁的离子液体[C2mim][FeCl4]. 在298.15 K下, 利用具有恒温环境的溶解反应热量计测定了这种离子液体的摩尔溶解焓(ΔsHm). 针对[C2mim][FeCl4]溶解于水后即分解的特点, 在Pitzer电解质溶液理论基础上, 提出了确定这种离子液体标准摩尔溶解焓的新方法, 得到了[C2mim][FeCl4]的标准摩尔溶解焓(ΔsH 0—m=-76.6 kJ/mol), 以及Pitzer焓参数组合: β(0)LFe,Cl+β(0)L[C2mim], Cl+ΦLFe,[C2mim]=0.072209和β(1)LFe,Cl+β(1)L[C2mim], Cl=0.15527. 借助热力学循环和Glasser离子液体晶格能理论, 用Fe3+, Cl-和[C2mim]+的离子水化焓数据以及[C2mim][FeCl4]标准摩尔溶解焓, 估算得到了配离子[FeCl4]-(g)解离成Fe3+(g)和4Cl-(g)的解离焓为5659 kJ/mol. 这个结果揭示了离子液体[C2mim][FeCl4]的标准摩尔溶解焓绝对值并不很大的原因, 即很大的离子水化焓被很大的[FeCl4]-(g)的解离焓相互抵消.  相似文献   

5.
在干燥的氩气氛中, 于363 K下缓慢混合等摩尔的氯化1-甲基-3-丁基咪唑(BMIC)和高纯无水ZnCl2, 得到了无色透明的离子液体BMIC/ZnCl2. 在298.15 K下, 用具有恒温环境的溶解反应热量计测定了不同浓度离子液体BMIC/ZnCl2在水中的溶解焓, 依据Pitzer方程拟合得到它们的标准摩尔溶解焓ΔsH0m和Pitzer溶解焓参数. 利用标准摩尔溶解焓估算了离子液体的水化焓.  相似文献   

6.
稀散金属铟的离子液体EMIInCl4的热化学性质研究   总被引:2,自引:2,他引:0  
杨家振  关伟  王恒  李垒  张庆国 《化学学报》2006,64(13):1385-1388
在充满干燥氩气的手套箱中用直接混合等物质的量的EMIC(氯化1-甲基-3-乙基咪唑)和高纯无水InCl3的方法, 制备了含稀散金属铟的离子液体EMIInCl4. 在298.15 K下, 利用自行组装的具有恒温环境的溶解反应热量计, 测定了离子液体EMIInCl4和EMIC在水中的反应溶解热, 并将这些实验数据按Pitzer方程作拟合, 分别得到了EMIInCl4和EMIC的无限稀释摩尔溶解热ΔsHm0和Pitzer溶解焓参数. 根据溶解热和水化热数据, 估算了InCl4(g)解离成In3+(g)和4Cl(g)的解离热, 还估算了反应: EMIC+InCl3→EMIInCl4的摩尔反应热ΔrHm=(-60.37±1.8) kJ•mol-1. 在合成离子液体EMIInCl 4中也观察到了放热现象, 这表明在合成过程中生成了InCl4.  相似文献   

7.
在298.15 K下利用等温环境溶解反应热量计测定了离子液体C3MIBF4(四氟硼酸1-甲基-3-丙基咪唑)和C5MIBF4(四氟硼酸1-甲基-3-戊基咪唑)不同浓度水溶液的摩尔溶解焓(ΔsHm). 借助Pitzer电解质溶液理论, 得到了它们的标准摩尔溶解焓 和Pitzer焓参数: 和 , 并计算了表观相对摩尔焓. 根据Glasser理论计算了离子液体晶格能, 进而估算了离子液体C5MIBF4和C3MIBF4中正离子的水化焓分别为-171 kJ•mol-1 (C5MI)和-207 kJ•mol-1 (C3MI).  相似文献   

8.
在298.15 K下利用等温环境溶解反应热量计测定了离子液体C3MIBF4(四氟硼酸1-甲基-3-丙基咪唑)和C5MIBF4(四氟硼酸1-甲基-3-戊基咪唑)不同浓度水溶液的摩尔溶解焓(ΔsHm). 借助Pitzer电解质溶液理论, 得到了它们的标准摩尔溶解焓 和Pitzer焓参数: 和 , 并计算了表观相对摩尔焓. 根据Glasser理论计算了离子液体晶格能, 进而估算了离子液体C5MIBF4和C3MIBF4中正离子的水化焓分别为-171 kJ•mol-1 (C5MI)和-207 kJ•mol-1 (C3MI).  相似文献   

9.
关伟  王彩霞  王珍  陈三平  高胜利 《化学学报》2011,69(11):1280-1286
用中和法合成了氨基酸离子液体1-甲基-3-乙基咪唑缬氨酸盐([CB2Bmim][Val]). 在298.15±0.01 K下, 利用恒温溶解反应热量计测定了不同含水量的[CB2Bmim][Val]溶解成不同质量摩尔浓度溶液的溶解焓, ΔBsolBHBmB (w), 借助标准加入法(SAM)和Archer方法得到了无水离子液体[CB2Bmim][Val]的标准摩尔溶解焓, . 利用RB-II型精密转动弹热量计测定了该离子液体的燃烧热, 计算了其标准摩尔燃烧焓 和标准摩尔生成焓 |并结合该离子液体的标准摩尔溶解焓和乙基咪唑阳离子[CB2Bmim]在水溶液中的标准摩尔生成焓, 计算了[Val]P离子在水溶液中的标准摩尔生成焓. 利用RD496-III型热导式微量热量计测定了不同质量摩尔浓度[CB2Bmim][Val]水溶液的稀释焓, 根据扩展的Debye-Hückel方程计算得到的相对表观摩尔焓PφPL和根据Pitzer离子相互作用模型的计算值在实验误差范围内很好一致.  相似文献   

10.
在(298.15 ±0.01) K下用转动弹热量计测定了离子液体硫酸乙酯-1-甲基-3-乙基咪唑(EMIES)及合成它的原料1-甲基咪唑的恒容燃烧热,通过计算得到它们的标准燃烧焓 分别为(-2671±2) 和(-286.3±0.5) kJ·mol-1;标准生成焓 分别为(-3060±3) kJ·mol-1和(-2145±4) kJ·mol-1.结合文献上硫酸二乙酯的标准生成焓数据,得到了合成离子液体EMIES的反应热(-102.3±1.0) kJ·mol-1,与合成实验中观察到的强烈放热现象是一致的.根据离子液体EMIES的热容数据,计算了不同温度下EMIES的标准生成焓.  相似文献   

11.
The enthalpies of protonation of polyamines in aqueous solution are interpreted in terms of a simple model that does not involve any tautomeric equilibrium. The enthalpies are calculated as the sum of two contributions; bond formation enthalpy (E B ) and solvation enthalpy (E S . The results agree well with experimental data.  相似文献   

12.
化学反应焓是物理化学学习的重点和难点,通过教学实践发现,设计生成焓与反应焓关系、 燃烧焓与反应焓关系的能级图,能够简化计算过程,而且可以清楚得区别反应焓、生成焓和燃烧焓。  相似文献   

13.
The standard molar enthalpies of formation f H m ° (l) at the temperature T = 298.15 K were determined using combustion calorimetry for N-methylpiperidine (A), N-ethylpiperidine (B), N-propylpiperidine (C), N-butylpiperidine (D), N-cyclopentylpiperidine (E), N-cyclohexylpiperidine (F), and N-phenylpiperidine (G). The standard molar enthalpies of vaporization l g H m ° of these compounds were obtained from the temperature variation of the vapor pressure measured in a flow system. From these data the following standard molar enthalpies of formation in gaseous phase f H m ° (g) were derived for: A –(61.39 ± 0.88); B –(88.1 ± 1.3); C –(105.81 ± 0.66); D –(126.2 ± 1.3); E ( –88.21 ± 0.75); F –(135.21 ± 0.94); G (70.3 ± 1.4) kJ · mol–1. They are used to determine the strain enthalpies of the cyclic amines A–G. The N-alkylated piperidine rings have been found to be about strainless.  相似文献   

14.
The standard molar enthalpies of formation f H m ° (cr) at the temperature T = 298.15 K were determined using combustion calorimetry for di-tert-butyl-methanol (A), di-tert-butyl-iso-propyl-methanol (B), and di-phenyl-methyl-methanol (C). The standard molar enthalpies of sublimation cr 8 H m ° of these compounds and of di-phenyl-methanol (D) were obtained from the temperature variation of the vapor pressure measured in a flow system. Molar enthalpies of fusion cr 1 H m ° of the compounds A–D and of tri-phenyl-methanol (E) were measured by differential scanning calorimeter (DSC). From these data and data available from the literature, the following standard molar enthalpies of formation in gaseous phase f H m ° (g) for A, (–397.0 ± 1.2); B, (–418.1 ± 2.3); C, (–34.2 ± 1.3); and D, (0.9 ± 2.1) kJ · mol–1 were derived, which correspond to strain enthalpies (H S) of 46.1, 114.7, 8.1, and 5.0 kJ · mol–1, respectively.  相似文献   

15.
The enthalpies of vaporization of different classes three-coordinated arsenic compounds have been determined according to their enthalpies of solution in hexane and molar refraction. The enthalpies of solvation of cyclic and acyclic As(III)-derivatives in hexane, carbon tetrachloride,p-xylene and pyridine are obtained and discussed. Part 6, see Ref. [1].  相似文献   

16.
Enthalpies of solution in water, H sol o , and enthalpies of sublimation, H sub o , were determined experimentally for a number of crystalline derivatives of adenine: 6,8,9-trimethyladenine; 6,9-dimethyl-8-ethyladenine; 6,9-dimethyl-8-propyladenine; 6,9-dimethyl-8-butyladenine; 8,9-dimethyl-adenine and 9-methyl-8-ethyladenine. Standard enthalpies of hydration, H hydr o , derived from these data were calculated. The latter were discussed together with the values for variously alkylated adenines, determined previously. The data obtained show that the dependence of enthalpy of hydration on the number of methylene groups added upon substitution with 8-n-alkyl groups of 9-methyladenine and 6,9-dimethyladenine is nonlinear.  相似文献   

17.
The enthalpies of vaporization of different classes of phosphorylated alcohols and amines were determined from their enthalpies of solution in hexane and carbon tetrachloride. The enthalpies of specific (hydrogen-bond) interaction with the solvents (chloroform and pyridine) of derivatives containing X-H groups (X=O or N) in the α-position to the P=O group were determined. The results were explained in terms of the spatial structure of such compounds. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

18.
The standard molar enthalpies of formation H f 00B0; (liq) at the temperature t = 298.15 K were determined using combustion calorimetry for N-methyl-3-methyl-3-phenyl-2-butaneamine 1a, N,N-dimethyl-3-methyl-3-phenyl-2-butaneamine 1b N-methyl-2,3-dimethyl-3-phenyl-2-butaneamine 2a, and N,N-dimethyl-2,3-dimethyl-3-phenyl-2-butaneamine 2b. The standard molar enthalpies of vaporization H vap 00B0; of these compounds were obtained from the temperature variation of the vapor pressure measured in a flow system. The following standard molar enthalpies of formation in gaseous phase H f 00B0; (g) are obtained from these data: for 1a – 10.9 ± 1.9; 1b – 3.6 ± 1.8; 1c – 26.6 ± 1.4, and 1d – 23.0 ± 1.8 kJ mol–1. From the standard molar enthalpies of formation for gaseous compounds which are available in the literature, improved values for the increments of the Benson group addivitiy scheme of amines were calculated. They are used to determine the strain enthalpies of the amines 1 and 2 from this investigation.  相似文献   

19.
The enthalpies of combustion (ΔH comb) of five primary, secondary, and tertiary alkyl(aryl)arsines in the condensed state were calculated using the equation ΔH comb = −385.8–110.3N, where N is the number of bond-forming electrons. The dependence presented is used for the calculation of the enthalpies of combustion of full esters and amidoesters of arsinous acid of noncyclic and cyclic structures. Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 5, pp. 1042–1043, May, 2007.  相似文献   

20.
The adsorption heat of the stoichiometric displacement process for the adsorption of a solute in a liquid-solid system was investigated. On the basis of the SDM-A and the rule of the additivity of energy, an expression which describes the dependence of the adsorption enthalpy on the nature and concentration of the solute, and on the solvent and adsorbent, was derived. The adsorption heat determined for the solute with the traditional method can be divided into two independent fractions, relating to the adsorption of the solute and to the desorption of the solvent. Experimental data on both isotherms from the literatures and precise calorimetry were used to test the adsorption heat and its fractions computed quantitatively via the equations presented in this study, and a satisfactory degree of conformity between them was obtained. Supported by the Natural Science Foundation of Shaanxi Province in China.  相似文献   

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