Please use this identifier to cite or link to this item: http://localhost:80/xmlui/handle/123456789/19607
Title: Synthesis, Crystal Structure and Thermodynamic Properties of the Compound (C10H16NO)2CdCl4·C10H16NOCl·H2O(s)
Authors: DONG-HUA HE
JING-TAO CHEN
YOU-YING DI
ZHEN-PING CHEN
DA-QI WANG
WEN-YAN DAN
Issue Date: 6-Jun-2011
Publisher: Karachi: International Centre for Chemical and Biological Sciences, H.E.J. Research Institute of Chemistry, University of Karachi
Citation: WANG, D. Q., Chen, J. T., DAN, W. Y., HE, D. H., CHEN, Z. P., & DI, Y. Y. (2011). Synthesis, Crystal Structure and Thermodynamic Properties of the Compound (C10H16NO) 2CdCl4· C10H16NOCl· H2O (s). Journal of the Chemical Society of Pakistan, 33(6), 333.
Abstract: A novel complex (C10H16NO)2CdCl4·C10H16NOCl·H2O(s) was synthesized by the method of liquid phase reflux synthesis. FTIR, chemical and elemental analysis, and X-ray crystallography were applied to characterize the crystal structure and composition of the complex. The crystal structure of the complex belongs to triclinic system with space group P1 and cell parameters a=0.55703(6) nm, b=1.39937(15) nm, c=1.40559(16) nm; α=117.819(2)° , β =98.8510(10)° , γ =96.5770(10)°, respectively. The compound is a salt, which consists of three [C10H16NO]+ cations, a [CdCl4] 2- anion, a Cl- anion and a water molecule. On account of electrostatic attraction and four types of intramolecular hydrogen bonds an infinite network supermolecule is formed. Low-temperature heat capacities of the compound were measured by a precise automated adiabatic calorimeter over the temperature range from 78 to 365 K. A polynomial equation of heat capacities against the temperature in the region of (78—365) K was fitted by least square method. Based on the fitted polynomial equation, the smoothed heat capacities and thermodynamic functions of the compound relative to the standard reference temperature 298.15 K were calculated at intervals of 5 K.
URI: http://142.54.178.187:9060/xmlui/handle/123456789/19607
ISSN: 0253-5106
Appears in Collections:Issue 03

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