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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Solid plus Liquid Equilibria for the Systems CsBr + ErBr3 + H2O and CsBr + ErBr3 + HBr (similar to 12.3%) + H2O at 298.15 K and Atmospheric Pressure and Thermodynamic and Fluorescent Properties of the New Solid-Phase Compound
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Solid plus Liquid Equilibria for the Systems CsBr + ErBr3 + H2O and CsBr + ErBr3 + HBr (similar to 12.3%) + H2O at 298.15 K and Atmospheric Pressure and Thermodynamic and Fluorescent Properties of the New Solid-Phase Compound

机译:CsBr + ErBr3 + H2O和CsBr + ErBr3 + HBr(约12.3%)+ H2O在298.15 K时的固体加液体平衡以及新的固相化合物的大气压,热力学和荧光性质

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摘要

The phase equilibria of the ternary system CsBr + ErBr3 + H2O and the quaternary system CsBr + ErBr3 + HBr (similar to 12.3 %) + H2O at 298.15 K were determined experimentally with the isothermal solubility method. Based on the measured solubility data, the corresponding phase diagrams were plotted. In the ternary system, three crystallization regions corresponding to CsBr, 3CsBr.2ErBr(3).16H(2)O, and ErBr3.9H(2)O were found. Similarly, there were three crystallization regions corresponding to CsBr, 3CsBr.2ErBr(3).16H(2)O, and ErBr3.7H(2)O in the quaternary system. The phase diagrams of the ternary and quaternary systems were compared, and it showed that (1) a new double salt 3CsBr.2ErBr(3).16H(2)O was formed which was incongruently soluble in the two systems; (2) the area of the crystallization region of 3CsBr.2ErBr(3).16H(2)O increased with the increasing concentration of HBr in the equilibrium liquid phase, and (3) ErBr3.9H(2)O transformed into ErBr3.7H(2)O when the HBr reached a certain amount. The new solid-phase compound 3CsBr.2ErBr(3).16H(2)O was characterized by chemical analysis, XRD, and TG-DTG techniques. The standard molar enthalpy of solution of 3CsBr.2ErB(r)3.16H(2)O in water was confirmed to be -(6.69 +/- 0.29) kJ.mol(-1) by microcalorimetry in the limit of infinite dilution and its standard molar enthalpy of formation was determined to be -(7846.1 +/- 1.2) kJ.mol(-1). The fluorescence excitation and emission spectra of 3CsBr.2ErBr(3).16H(2)O were measured. The results indicated that up-conversion spectra of the new solid phase compound exhibit at 470 nm and are excited at 710 nm.
机译:用等温溶解度法通过实验确定了298.15 K时三元体系CsBr + ErBr3 + H2O和四元体系CsBr + ErBr3 + HBr(约12.3%)+ H2O的相平衡。根据测得的溶解度数据,绘制相应的相图。在三元系统中,发现了三个结晶区域,分别对应于CsBr,3CsBr.2ErBr(3).16H(2)O和ErBr3.9H(2)O。同样,在四元体系中存在三个对应于CsBr,3CsBr.2ErBr(3).16H(2)O和ErBr3.7H(2)O的结晶区域。比较了三元和四元系统的相图,结果表明:(1)形成了新的复盐3CsBr.2ErBr(3).16H(2)O,该盐在两个系统中均不相容。 (2)3CsBr.2ErBr(3).16H(2)O的结晶区域面积随着平衡液相中HBr浓度的增加而增加,以及(3)ErBr3.9H(2)O转化为ErBr3。当HBr达到一定量时为7H(2)O。通过化学分析,XRD和TG-DTG技术对新型固相化合物3CsBr.2ErBr(3).16H(2)O进行了表征。在无限稀释的范围内,通过微量热法测定了3CsBr.2ErB(r)3.16H(2)O在水中的标准摩尔焓为-(6.69 +/- 0.29)kJ.mol(-1)。确定的标准摩尔形成焓为-(7846.1 +/- 1.2)kJ.mol(-1)。测量了3CsBr.2ErBr(3).16H(2)O的荧光激发和发射光谱。结果表明,新的固相化合物的上转换光谱在470 nm处显示并且在710 nm处被激发。

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