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News
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.
June 25, 2026
HSE Scientists Explain Why Findings in Autism Research Differ
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.
June 22, 2026
‘In Science, You Are Your Own Boss
Polina Nasledskova is interested in identifying gaps in linguistics and topics that have been overlooked by other researchers. In an interview for the  Young Scientists of HSE University project, she spoke about rare ordinal numerals in Nakh-Daghestanian languages, the benefits of knitting for concentration, and the beauty of the Patriarshy Bridge.

 

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Транспортные свойства слоистых гетероструктур на базе проводящего полимера

Физика твердого тела. 2023. Т. 65. № 1. С. 151–156.
Arutyunov K., Беляев К. А., Артемов В. В., Васильев А. Л., Юсупов А. Р., Карамов Д. Д., Лачинов А. Н.

Polydiphenylenephthalide (PDF) belongs to the class of organic dielectrics, which exhibit electric conductive properties when an external electrostatic field and/or mechanical stress is applied. In this work, the transport properties of thin-film layered lead–PDF–lead structures were experimentally studied in a wide temperature range. At sufficiently high temperatures, the volt–ampere dependences are satisfactorily described in terms of the injection model of currents limited by the space charge. At temperatures below ~7.5 K, a number of samples exhibit features that can be explained by the effect of induced superconductivity in a thin film of a conducting polymer enclosed between two massive superconductors (lead).

Research target: Electronics and Electrical Engineering Physics
Language: Russian
Full text
DOI
Keywords: superconductivityсверхпроводимостьтонкие пленкиthin filmspolymerquantum nanoelectronicsквантовая наноэлектроникаполимер
Publication based on the results of:
Квантовые эффекты в низкоразмерных гибридных наноструктурах  (2025)
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