A novel material with world record-breaking surface area and water adsorption abilities was synthesized by scientists. The results are published in PLOS ONE. The magnesium carbonate material that has been given the name Upsalite is foreseen to reduce the amount of energy needed to control environmental moisture in the electronics and drug formulation industry as well as in hockey rinks and ware houses. It can also be used for collection of toxic waste, chemicals or oil spill and in drug delivery systems, for odor control and sanitation after fire. "In contrast to what has been claimed for more than 100 years in the scientific literature, we have found that amorphous magnesium carbonate can be made in a very simple, low-temperature process," said Johan Goméz de la Torre, researcher at the Nanotechnology and Functional Materials Division of Uppsala University, Sweden. While ordered forms of magnesium carbonate, both with and without water in the structure, are abundant in nature, water-free disordered forms have been proven extremely difficult to make. In 1908, German researchers claimed that the material could indeed not be made in the same way as other disordered carbonates, by bubbling CO2 through an alcoholic suspension. Subsequent studies in 1926 and 1961 came to the same conclusion. "A Thursday afternoon in 2011, we slightly changed the synthesis parameters of the earlier employed unsuccessful attempts, and by mistake left the material in the reaction chamber over the weekend. Back at work on Monday morning we discovered that a rigid gel had formed and after drying this gel we started to get excited," said Johan Goméz de la Torre. A year of detailed materials analysis and fine tuning of the experiment followed. One of the researchers got to take advantage of his Russian skill since some of the chemistry details necessary for understanding the reaction mechanism was only available in an old Russian PhD thesis. "After having gone through a number of state of the art materials characterization techniques it became clear that we had indeed synthesized the material that previously had been claimed impossible to make," said Maria Strømme, professor of nanotechnology and head of the nanotechnology and functional materials division. The most striking discovery was, however, not that they had produced a new material but it was instead the striking properties they found that this novel material possessed. It turned out that Upsalite had the highest surface area measured for an alkali earth metal carbonate; 800 square meters per gram. "This places the new material in the exclusive class of porous, high surface area materials including mesoporous silica, zeolites, metal organic frameworks, and carbon nanotubes," said Strømme. In addition we found that the material was filled with empty pores all having a diameter smaller than 10 nano meters. This pore structure gives the material a totally unique way of interacting with the environment leading to a number of properties important for application of the material. Upsalite is for example found to absorb more water at low relative humidities than the best materials presently available; the hydroscopic zeolites, a property that can be regenerated with less energy consumption than is used in similar processes today. "This, together with other unique properties of the discovered impossible material is expected to pave the way for new sustainable products in a number of industrial applications," said Maria Strømme.
GMT 16:03 2018 Wednesday ,28 November
Executive Office of Arab Ministers of Communications starts in CairoGMT 09:12 2018 Thursday ,15 November
Syria, Iran discuss enhancing scientific cooperationGMT 17:45 2018 Wednesday ,31 October
Next expedition may go to ISS on 3 DecemberGMT 13:56 2018 Saturday ,27 October
Head of Soviet space shuttle program dies aged 89GMT 15:58 2018 Monday ,15 October
Crew scheduled to go to ISS to remain unchangedGMT 10:57 2018 Saturday ,13 October
Expert says crewless ISS poses risk of station’s lossGMT 18:49 2018 Thursday ,11 October
Soyuz-FG suffers setback in 165th second of flightGMT 17:53 2018 Sunday ,07 October
Science, technologies to be bridge between Russian and JapanMaintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2021 ©
Maintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2021 ©
Send your comments
Your comment as a visitor