Formation of a meltable purinate metal-organic framework and its glass analogue.
Chemical communications (Cambridge, England) (2022)
Abstract:
The chemistries that can be incorporated within melt-quenched zeolitic imidazolate framework (ZIF) glasses are currently limited. Here we describe the preparation of a previously unknown purine-containing ZIF which we name ZIF-UC-7. We find that it melts and forms a glass at one of the lowest temperatures reported for 3D hybrid frameworks.Mapping short-range order at the nanoscale in metal–organic framework and inorganic glass composites
Nanoscale Royal Society of Chemistry 14:44 (2022) 16524-16535
Abstract:
) inorganic glass. STEM-ePDF enables separation of MOF and inorganic glass domains from atomic structure differences alone, showing abrupt changes in atomic structure at interfaces with interatomic correlation distances seen in X-ray PDF preserved at the nanoscale. These findings underline that the average bulk amorphous structure is retained at the nanoscale in the growing family of MOF glasses and composites, a previously untested assumption in PDF analyses crucial for future non-crystalline nanostructure engineering.Modeling the Effect of Defects and Disorder in Amorphous Metal–Organic Frameworks
Chemistry of Materials American Chemical Society (ACS) 34:20 (2022) 9042-9054
Formation of new crystalline qtz-[Zn(mIm)2] polymorph from amorphous ZIF-8.
Chemical communications (Cambridge, England) 58:85 (2022) 11949-11952
Abstract:
The structure of a new ZIF-8 polymorph with quartz topology (qtz) is reported. This qtz-[Zn(mIm)2] phase was obtained by mechanically amorphising crystalline ZIF-8, before heating the resultant amorphous phase to between 282 and 316 °C. The high-temperature phase structure was obtained from powder X-ray diffraction, and its thermal behaviour, CO2 gas sorption properties and dye adsorption ability were investigated.Semi‐analytic theory of multiphonon effects on the static structure factors of warm solids
Acta Crystallographica Section A: Foundations and advances International Union of Crystallography (IUCr) 78:5 (2022) 415-421