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1997 (1)
1Author    Roman Goc, JanW. WąsickiRequires cookie*
 Title    Computer Simulation of the Order-Disorder Transition in Ammonium Chloride  
 Abstract    The phase transition at T c = 243 K in ammonium chloride is well established to be of the order-disorder type. The ammonium chloride has a CsCl-type cubic structure with hydrogen atoms pointing toward four of the eight chloride ions at the corners of the unit cell. This means that there are two possible orientations of ammonium tetrahedron; a and b. In the ordered phase below the T c temperature all ammonium ions have the same, let it be a, orientation. Above the T c temperature ions are randomly distributed among the two possible orientations a and b. An attempt was made to correlate such structural transition with the second moment of the proton NMR absorption line. This approach was chosen because the second moment is the parameter of the NMR line for which the exact theoretical formula exist, and which is mainly a function of the structure and the reorien-tational state of the studied material. It was found that the NMR second moments calculated for the described above model of the structural transition properly reflect the changes of the experimental NMR second moments measured at temperatures below and above this transition. 
  Reference    Z. Naturforsch. 52a, 609—613 (1997); received June 18 1997 
  Published    1997 
  Keywords    NMR, Ammonium chloride, Phase transition, Simulation 
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 TEI-XML for    default:Reihe_A/52/ZNA-1997-52a-0609.pdf 
 Identifier    ZNA-1997-52a-0609 
 Volume    52