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Mechanochemical Metathesis between AgNO3 and NaX (X = Cl, Br, I) and Ag2XNO3 Double-Salt Formation (CROSBI ID 291381)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Lukin, Stipe ; Stolar, Tomislav ; Lončarić, Ivor ; Milanović, Igor ; Biliškov, Nikola ; di Michiel, Marco ; Friščić, Tomislav ; Halasz, Ivan Mechanochemical Metathesis between AgNO3 and NaX (X = Cl, Br, I) and Ag2XNO3 Double-Salt Formation // Inorganic chemistry, 59 (2020), 17; 12200-12208. doi: 10.1021/acs.inorgchem.0c01196

Podaci o odgovornosti

Lukin, Stipe ; Stolar, Tomislav ; Lončarić, Ivor ; Milanović, Igor ; Biliškov, Nikola ; di Michiel, Marco ; Friščić, Tomislav ; Halasz, Ivan

engleski

Mechanochemical Metathesis between AgNO3 and NaX (X = Cl, Br, I) and Ag2XNO3 Double-Salt Formation

Here we describe real-time, in situ monitoring of mechanochemical solid-state metathesis between silver nitrate and the entire series of sodium halides, on the basis of tandem powder X-ray diffraction and Raman spectroscopy monitoring. The mechanistic monitoring reveals that reactions of AgNO3 with NaX (X = Cl, Br, I) differ in reaction paths, with only the reaction with NaBr providing the NaNO3 and AgX products directly. The reaction with NaI revealed the presence of a novel, short-lived intermediate phase, while the reaction with NaCl progressed the slowest through the well- defined Ag2ClNO3 intermediate double salt. While the corresponding iodide and bromide double salts were not observed as intermediates, all three are readily prepared as pure compounds by milling equimolar mixtures of AgX and AgNO3. The in situ observation of reactive intermediates in these simple metathesis reactions reveals a surprising resemblance of reactions involving purely ionic components to those of molecular organic solids and cocrystals. This study demonstrates the potential of in situ reaction monitoring for mechanochemical reactions of ionic compounds as well as completes the application of these techniques to all major compound classes.

Mixtures ; Physical and chemical processes ; Chemical reactions ; Energy ; Anions

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Podaci o izdanju

59 (17)

2020.

12200-12208

objavljeno

0020-1669

1520-510X

10.1021/acs.inorgchem.0c01196

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Kemija

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