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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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June 22, 2026
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Electrical properties arrays of intersecting of nanowires obtained in the pores of track membranes

Materials Chemistry and Physics. 2022. Vol. 287. Article 126285.
I. M. Doludenko, Volchkov I. S., Turenko B. A., Koshelev I. O., Podkur P. L., D. L. Zagorskiy, Kanevskii V. M.

In the following work by means of matrix synthesis the nanowire arrays of Fe–Ni alloy with elemental compo­
sition close to permalloy (Fe0⋅20Ni0.80) were obtained. In capacity of matrix the polyethylene terephthalate (PET) 
track membranes with angular distribution of pores within the range of ±30◦ and the diameter of pores in 100 
nm were used. As a result, via electrochemical deposition method the metal-polymer composite in the form of 
nanowire arrays in the polymeric matrix were obtained. The distribution of pores over the surface of track 
membranes and the average amount of nanowire intersections under a variety of lengths of the grown nanowires 
were calculated. The resistivity of metal-polymer composite arrays, formed with nanowires of varying length, 
was measured. The growth boundary conditions and the lengths of nanowire arrays that are essential for 
obtaining of conducting metal-polymer composite were determined. 

Research target: Physics Nanotechnologies
Language: English
DOI
Keywords: матричный синтезnanowiresнанопроволокиmatrix synthesisElectrical conductivityэлектрическая проводимостькинетика роста нанопроволокmetal polymer compositeметаллполимерный композит
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