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Ion- and Liquid-Assisted Grinding: Improved Mechanochemical Synthesis of Metal–Organic Frameworks Reveals Salt Inclusion and Anion Templating (CROSBI ID 163762)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Friščić, Tomislav ; Reid, David G. ; Halasz, Ivan ; Stein, Robin S. ; Dinnebier, Robert E. ; Duer, Melinda J. Ion- and Liquid-Assisted Grinding: Improved Mechanochemical Synthesis of Metal–Organic Frameworks Reveals Salt Inclusion and Anion Templating // Angewandte Chemie. International edition, 49 (2010), 4; 712-715. doi: 10.1002/anie.200906583

Podaci o odgovornosti

Friščić, Tomislav ; Reid, David G. ; Halasz, Ivan ; Stein, Robin S. ; Dinnebier, Robert E. ; Duer, Melinda J.

engleski

Ion- and Liquid-Assisted Grinding: Improved Mechanochemical Synthesis of Metal–Organic Frameworks Reveals Salt Inclusion and Anion Templating

Just a pinch of salt: Small amounts of salts accelerate and direct the mechanochemical construction of metal-organic frameworks (MOFs) from a metal oxide (see scheme ; ILAG= ion- and liquid-assisted grinding). The resulting rapid and room-temperature synthesis demonstrates the ability to control mechanosynthesis of metal-organic compounds by templating, as well as the ability to use mechanochemistry to include ionic guests within neutral MOFs.

ions ; mechanochemistry ; metal-organic frameworks ; solid-state reactions ; sustainable chemistry

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Podaci o izdanju

49 (4)

2010.

712-715

objavljeno

1433-7851

1521-3773

10.1002/anie.200906583

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