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Dive into the research topics where I. A. Akimov is active.

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Featured researches published by I. A. Akimov.


Journal of Optical Technology | 2003

Polymorphic modifications of Mg phthalocyanine nanoparticles and their optical absorption spectra

I. A. Akimov; I. Yu. Denisyuk; A. M. Meshkov; A. V. Gorelova

This paper shows that nanostructuring in colloidal solutions at room temperature can be used to obtain various polymorphic forms of Mg phthalocyanine, including the X form. The latter is promising for practical use as an organic semiconductor having high photoelectric sensitivity in the visible and near-IR regions.


Journal of Optical Technology | 2003

Electrophotographic photoreceptors based on sublimated phthalocyanines

I. Yu. Denisyuk; A. M. Meshkov; I. A. Akimov

This paper shows that two-layer generation layers consisting of crystalline layers of the amodification of phthalocyanine?thionol, sublimated in vacuum, on which electroadsorption layers of amorphous Se are deposited by sublimation in vacuum, are promising for inverse highsensitivity and high-resolution photoreceptors of modern color electrophotographic systems.


Journal of Optical Technology | 2003

Light-resistant dyes based on organic and inorganic nanocrystals for optical polymers

I. A. Akimov; I. Yu. Denisyuk; A. M. Meshkov

This paper shows that nanocomposites consisting of nanocrystals of organic semiconductors (the dyes Mg phthalocyanine and thioindigo red) and inorganic semiconductors (CdS), introduced in high concentrations into a polymeric matrix (polycarbonate), possess substantially higher photostability than molecular solutions of organic dyes in a polymeric matrix and are therefore promising materials for colored optical filters.


Journal of Optical Technology | 2003

Nanocrystals of Mg phthalocyanine in liquids and solid polymeric matrices

I. Yu. Denisyuk; I. A. Akimov; A. M. Meshkov

This paper shows that nanoparticles of Mg phthalocyanine synthesized in colloidal solution can be extracted from it and can be introduced into a polycarbonate matrix. The solid polymeric matrix plays the role of a stabilizer of the nanoparticles?it prevents them from recrystallizing and coagulating and maintains the form of aggregation that the nanoparticles acquired when they were synthesized in colloidal solution.


Optical Information Science and Technology (OIST97): Optical Recording Mechanisms and Media | 1998

Successive photothermoplastic process: a high-sensitivity and high-resolution reversible photomaterial - methods of recording and reading semitone images

I. A. Akimov; Yuri A. Gogolev; Igor Yu. Denisyuk; I. L. Kislovsky; A. M. Meshkov; V. G. Travin

New photothermoplastic material was made by solved together of three problems: to provide registering material with record high-sensitivity and high-resolution, to provide for inner rastering, to develop the transformation of the phase image to the amplitude one.


Journal of Optical Technology | 2001

Classical - nonquantum - semiconductor nanocrystals in organic matrices

I. A. Akimov; I. Yu. Denisyuk; A. M. Meshkov


Optics and Spectroscopy | 1994

Preparation of optical media from compositions of dye nanocrystals in polymer matrices

I. A. Akimov; I. Yu. Denisyuk; A. M. Meshkov


Journal of Optical Technology | 1999

Design principles of high-sensitivity and high-resolution electrophotographic andphotothermoplastic materials

I. A. Akimov; Yu. A. Gogolev; I. Yu. Denisyuk; A. M. Meshkov


Proceedings of SPIE, the International Society for Optical Engineering | 1998

Reverse photothermoplastic high sensitivity registered material for high-density UV-record of information

Igor Yu. Denisyuk; I. A. Akimov; A. M. Meshkov


Journal of Optical Technology | 1998

Methods of internally rasterizing photothermoplastic materials with injection sensitization

I. A. Akimov; Igor Denisyuk; I. L. Kislovskii; A. M. Meshkov

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A. M. Meshkov

Vavilov State Optical Institute

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I. Yu. Denisyuk

Saint Petersburg State University

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Igor Yu. Denisyuk

Vavilov State Optical Institute

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I. L. Kislovsky

Vavilov State Optical Institute

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V. G. Travin

Vavilov State Optical Institute

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Yu. A. Gogolev

Vavilov State Optical Institute

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Yuri A. Gogolev

Vavilov State Optical Institute

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