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Current isotope separation processes are not very efficient and consume vast amounts of energy. "It has been known for almost 15 years that porous metal-organic frameworks can, in principle, be ...
Hydrogen isotope separation and catalytic exchange processes represent a critical area of research in both energy and environmental science. These techniques focus on distinguishing isotopes of ...
One out of 6420 hydrogen atoms, on average, is a deuterium isotope. Deuterium isotopes are distributed in molecules that contain hydrogen, including, importantly, in all forms of water – also water in ...
An international research team has successfully produced hydrogen-6 (⁶H), one of the most neutron-rich isotopes known, for the first time using electron scattering. The results, obtained at the ...
Tritium is a hydrogen isotope that shares a lot of characteristics with its two siblings: 1 H (protium) and 2 H (deuterium), with the main distinction being that tritium (3 H) is not a stable ...
As part of the Hydrogen Isotopes 1,2,3H Research Training Group, a team from Leipzig University and TU Dresden has made a significant advancement in the effective and economical provision of isotopes, ...
"New method to produce an extremely heavy hydrogen isotope." ScienceDaily. ScienceDaily, 2 May 2025. <www.sciencedaily.com / releases / 2025 / 04 / 250430141848.htm>.
Thus, the isotopic differences in the strength of hydrogen bonds are determined by a delicate balance between the competing two deuteration effects (1) and (2), while those in hydrogen-bond length ...
"Cage molecules act as molecular sieves for hydrogen isotope separation." ScienceDaily. ScienceDaily, 1 November 2019. <www.sciencedaily.com / releases / 2019 / 11 / 191101124622.htm>.
Controlling the uniformity of hydrogen isotope density ratio in fusion plasma is a problem for realizing fusion energy. The researchers have reached a key understanding of the process to make the ...
The lightest of all elements, hydrogen, is in great demand due to its promising role as a sustainable resource in the energy transition. A team from Leipzig University and TU Dresden, as part of ...