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Isomer Directed Synthesis of Two 3D Cadmium(II) Compounds: Structure Variation and Energetic Performance
Authors:Bo Wei  Duo Xu  Zhan Yong Yang  Fan Sun  Xiao Qing Gu  Chang Yu Sun  Fang Yu Guo  Qiao Yun Li  Gao Wen Yang
Affiliation:1.Indic Institute of Design and Research,Khurda,India;2.Faculty of Science & Technology,IFHE,Hyderabad,India
Abstract:Two inorganic mixtures of copper and sodium compounds have been synthesized and characterized with different measurement techniques. The thermal property of these mixtures has been studied to low temperature up to 223 from 573 K with DSC. The specific heat capacity of this mixture has been measured in atmospheric O2 at a rate of 10 K min?1 from 573 to 223 K and vice versa in two thermal cycles. The net specific heat capacity of these mixtures is found endothermic in first and second thermal cycles. The net specific heat capacity of 0.5Cu2(PO4)(OH); 3.5CuH(PO4)2·H2O; 2NaHSO4·H2O (CuPHS) during first thermal cycle is ?71203.05 J kg?1 K?1 and in second thermal cycle is ?73881.67 J kg?1 K?1 between temperature range of 303–223 K. The net specific heat capacity of mixture 0.5Cu2(PO4)(OH); 3.5CuH(PO4)2; 2Na2SO4(CuPS) in first thermal cycle is ?21158.37 J kg?1 K?1 and in second thermal cycle is?45739.92 J kg?1 K?1 between temperature range of 298–573 K. As both mixtures are endothermic in nature in all cycles, it can be used as heat storage material.The average crystallite size of mixture 0.5Cu2(PO4)(OH); 3.5CuH(PO4)2·H2O; 2NaHSO4·H2O and 0.5Cu2(PO4)(OH); 3.5CuH(PO4)2; 2Na2SO4 is ~47 and ~17.3 nm, respectively.
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