The Structure of Aqueous Electrolyte Solutions: Comparis on of Computer Simulation and Experiment

1991 ◽  
Vol 46 (1-2) ◽  
pp. 100-106 ◽  
Author(s):  
G. W. Neilson

AbstractThis review compares results of neutron and X-ray diffraction experiments with computer simulation and theoretical calculation for aqueous electrolyte solutions at the atomic level in terms of the partial radial distribution functions of several ionic solutions, and includes results for the ion-water and ion-ion structure of systems containing alkali ions, alkaline earth ions, transition metal cations and a few anions

Author(s):  
Oleg V. Grechin ◽  
Pavel R. Smirnov

At the X-ray diffraction analysis of high concentrated aqueous electrolyte solutions with multiply charged cations small angle maxima or pre-peaks are arising on scattering intensity curves (IC) (at about 1 Å). Their existence is connected with structural appearance so called “intermediate-range order”. Previously for explanation of this phenomenon some not completely correct hypotheses were suggested. On the example of raw X-ray diffraction data of some aqueous electrolyte solutions in wide concentration range collected by using MoKα-radiation the dynamic of small angle maxima shape change has been studied. It has been noted that pre-peaks absence on IC of cesium iodide and chloride solutions is not supporting the hypothesis about pure small angle contribution from “heavy” ions [1, 2]. In the case of Al3+, Sc3+, Fe3+ chloride solutions relative similarity of IC shapes has been noted for solutions with similar concentrations. The common tendency of pre-peaks position and intensity change has also been followed up. At the same time at comparing of saturated neodymium and ytterbium chloride and bromide solutions IC unexpectable pre-peaks position relative shift for bromide solutions to the long range distance comparing with chloride solutions has also been noted. These observations do not find complete agreement with hypothesis on realization in the structure mainly inter cationic distances [3, 4] and on existence in solutions “liquid type quasi-close-packing for cations” [5, 6]. On the basis of mainly realistic explanation of the pre-peak appearance reason from [7] the authors of this paper propose their own version. Noted shift of pre-peak position with concentration decreasing has been made in accordance with consideration described earlier for lanthanide solutions [8, 9]. The conclusion about pre-peaks on IC arising nature is conditioned by ordered interionic distribution which depends not only on ionic nature but also on solution concentration. For high concentrated solutions with considerable solvent deficit the quasi-periodic inter complex distribution has been supposed. The composition of structure determined cationic complexes has also been discussed. The diluted aqueous electrolyte solutions structure is determined by simple cationic and anionic complexes equidistant distribution.


2004 ◽  
Vol 74 (2) ◽  
pp. 167-170 ◽  
Author(s):  
M. K. Khripun ◽  
Yu. P. Kostikov ◽  
A. A. Kiselev ◽  
O. N. Pestova

1957 ◽  
Vol 24 ◽  
pp. 200 ◽  
Author(s):  
C. L. van Panthaleon van Eck ◽  
H. Mendel ◽  
W. Boog

2019 ◽  
Vol 69 (12) ◽  
pp. 3490-3493
Author(s):  
Elisabeta Coaca ◽  
Alexandru Marin ◽  
Oana Rusu ◽  
Viorel Malinovschi ◽  
Victor Andrei

Anticorrosion layers were prepared on commercial Zr-2.5%Nb alloy by employing plasma electrolytic oxidation (PEO) process in aqueous electrolyte solutions. Microstructure and electrochemical behavior were evaluated using X-ray diffraction (XRD), optical metallography and potentiodynamic polarization measurements. The obtained coatings are uneven, presenting a dominant monoclinic crystallographic phase of ZrO2. Enhanced corrosion resistance was attributed to the PEO-treated samples compared to the commercial black oxide coating.


1990 ◽  
Vol 45 (5) ◽  
pp. 687-694 ◽  
Author(s):  
M. F. Holovko ◽  
Yu. V. Kalyuzhny ◽  
K. Heinzinger

Abstract The role of electrostatic and packing contributions to the structure of water and aqueous electrolyte solutions has been investigated by the comparison of results of Molecular Dynamics simulations with those of analytical calculations for the corresponding Lennard-Jones systems. It is demonstrated that the electrostatic interactions play a dominant role in determining the characteristic data of the various radial distribution functions in the solutions, although their relative importance decreases with increasing pressure, temperature, and ionic concentration. It is proposed that for the analytical treatment of hydrogen bonded liquids the total potential should be subdivided into three regions - short range repulsion, potential minimum, long range electrostatic interactions - and a different theoretical approach should be employed for each region


Author(s):  
Jaecheol Choi ◽  
Hoang-Long Du ◽  
Manjunath Chatti ◽  
Bryan H. R. Suryanto ◽  
Alexandr Simonov ◽  
...  

We demonstrate that bismuth exhibits no measurable electrocatalytic activity for the nitrogen reduction reaction to ammonia in aqueous electrolyte solutions, contrary to several recent reports on the highly impressive rates of Bi-catalysed electrosynthesis of NH<sub>3</sub> from N<sub>2</sub>.


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