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June 25, 2026
HSE Researchers Make Aldehydes Perform Dual Function
Chemists from HSE University have discovered a way to carry out a reductive addition reaction without using an external reducing agent. Instead, the required 'resource' is supplied by the aldehyde itself, one of the reaction participants. This approach helps prevent unwanted side reactions, reduces toxicity, and simplifies the production and synthesis of organic molecules, including those used in the manufacture of medicines. The study has been published in Journal of Catalysis.
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Researchers from the Cognitive Health and Intelligence Centre at HSE University conducted the first-ever systematic review of studies on the specifics of emotion-from-motion perception in autism. The review showed that differences found between autistic and non-autistic individuals are largely associated with the experimental design and the types of tasks given to study participants. The review findings have been published in Research in Autism.
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Phase-sensitive thermoelectricity and long-range Josephson effect supported by thermal gradient

Physical Review B: Condensed Matter and Materials Physics. 2020. Vol. 101. No. 18. P. 180505-1–180505-5.
Kalenkov M. S., Dolgirev P. E., Zaikin A.

We demonstrate that a temperature gradient can strongly stimulate the thermoelectric signal, as well as
dc Josephson current, in multiterminal superconducting hybrid nanostructures. At temperatures T sufficiently
exceeding the Thouless energy of our device, both the supercurrent and the thermoinduced voltage are
dominated by the contribution from nonequilibrium low-energy quasiparticles and are predicted to decay slowly
(algebraically rather than exponentially) with increasing T . We also predict a nontrivial current-phase relation
and a transition to a π-junction state controlled by both the temperature gradient and the system topology. All
these features are simultaneously observable in the same experiment.

Research target: Nanotechnologies
Priority areas: engineering science
Language: English
Full text
DOI
Keywords: эффект ДжозефсонаJosephson effectнеравновесная сверхпроводимостьNon-equilibrium superconductivityквантовая когерентностьquantum coherencethermoelectric effectтермоэлектрический эффект
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