We synthesized the inorganic anhydrous aluminum carbonates Al[CO][CO] and Al[CO] by reacting AlO with CO at high pressures and temperatures and characterized them by Raman spectroscopy. Their structures were solved by X-ray diffraction. Al[CO] forms at around 24-28 GPa, while Al[CO][CO] forms above 38(3) GPa. The distinguishing feature of the new Al[CO][CO]-structure type is the presence of pyrocarbonate [CO]-groups, trigonal [CO]groups, and octahedrally coordinated trivalent cations. Al[CO] has isolated [CO]-groups. Both Al-carbonates can be recovered under ambient conditions. Density functional theory calculations predict that CO will react with FeO, TiO, GaO, InO, and MgSiO at high pressures to form compounds which are isostructural to Al[CO][CO]. MgSi[CO][CO] is predicted to be stable at pressures relative to abundant mantle minerals in the presence of CO. This structure type allows the incorporation of four elements (Mg, Si, Fe, and Al) abundant in the Earth's mantle in octahedral coordination and provides an alternative phase with novel carbon speciation for carbon storage in the deep Earth.
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http://dx.doi.org/10.1021/acs.inorgchem.3c01832 | DOI Listing |
Materials (Basel)
October 2024
Departamento de Química Inorgánica, Universidad Complutense de Madrid, 28040 Madrid, Spain.
Bismine sodium salt (BSNa), a Schiff base with two sodium carboxylates, has shown promising electrochemical performance as an anode material. However, its synthesis involves toxic reagents and generates impurities, requiring significant solvent use for purification. This study introduces a novel synthetic method using sodium hydroxide as the sole reagent, which acts as both a base and Na source in the ion exchange step.
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July 2024
Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.
Imidazole molecules entrapped in porous materials can exhibit high and stable proton conductivity suitable for elevated temperature (>373 K) fuel cell applications. In this study, new anhydrous proton conductors based on imidazole and mesoporous KIT-6 were prepared. To explore the impact of the acidic nature of the porous matrix on proton conduction, a series of KIT-6 materials with varying Si/Al ratios and pure silica materials were synthesized.
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June 2024
Faculty of Mathematics and Natural Sciences, Institute of Pharmaceutics and Biopharmaceutics, Heinrich Heine University Düsseldorf, 40225, Universitätsstraße 1, Düsseldorf, Germany.
Only few excipients are known to be suitable as pelletization aids. In this study, the potential use of croscarmellose sodium (CCS) as pelletization aid was investigated. Furthermore, the impact of cations on extrusion-spheronization (ES) of CCS was studied and different grades of CCS were tested.
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May 2024
School of Materials Science and Engineering, Hubei University, Wuhan, Hubei, 430000, People's Republic of China.
In order to elucidate the diffusion behaviour of ions in alumina during the anodic alumina process, the effects of electric field strength, hydration content, and electrolyte on amorphous alumina and hydrated alumina were studied using ab initio molecular dynamics. The results show that the diffusion rate of ions in alumina increases with the increase in electric field strength, but there is an extreme value. The maximum diffusion rate of Al ions in alumina monohydrate is 21.
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April 2024
Department of Chemistry, Isfahan University of Technology, Isfahan 8415683111, Iran.
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