Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One

It should be remarked that the basic knowledge collected from complicated area of the structuration process of the organic materials, including the liquid crystal (LC) ones, useful for the optoelectronics and biomedicine, requires extending the types of the novel matrix model materials and the class...

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Main Authors: Natalia Kamanina, Svetlana Likhomanova, Yulia Zubtsova
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:C
Subjects:
Online Access:https://www.mdpi.com/2311-5629/8/3/43
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author Natalia Kamanina
Svetlana Likhomanova
Yulia Zubtsova
author_facet Natalia Kamanina
Svetlana Likhomanova
Yulia Zubtsova
author_sort Natalia Kamanina
collection DOAJ
description It should be remarked that the basic knowledge collected from complicated area of the structuration process of the organic materials, including the liquid crystal (LC) ones, useful for the optoelectronics and biomedicine, requires extending the types of the novel matrix model materials and the class of the dopants, which can change the spectral and photorefractive features of the matrixes with good advantage. In the current paper the effect of the introduction of the bio-objects (based on DNA) and of the nano-objects (based on fullerenes, quantum dots, carbon nanotubes, shungites, graphenes) in the organic conjugated materials has been comparatively discussed. The influence of this process on the photorefractive features, namely on the laser-induced change of the refractive index, has been studied. The clear innovative tendency of the alternative using of the bio-objects together or instead of the nano-objects ones has been analyzed via considering of the modification of the spectral and non-linear optical characteristics.
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spelling doaj.art-5a4a76c885514faba736d5ecd06bd4e42023-11-23T15:29:16ZengMDPI AGC2311-56292022-08-01834310.3390/c8030043Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration OneNatalia Kamanina0Svetlana Likhomanova1Yulia Zubtsova2Lab for Photophysics of Media with Nanoobjects at Vavilov State Optical Institute, Kadetskaya Liniya V.O., dom 5, korp.2, Babushkina Str., dom 36, korp.1, 199053 St. Petersburg, RussiaLab for Photophysics of Media with Nanoobjects at Vavilov State Optical Institute, Kadetskaya Liniya V.O., dom 5, korp.2, Babushkina Str., dom 36, korp.1, 199053 St. Petersburg, RussiaLab for Photophysics of Media with Nanoobjects at Vavilov State Optical Institute, Kadetskaya Liniya V.O., dom 5, korp.2, Babushkina Str., dom 36, korp.1, 199053 St. Petersburg, RussiaIt should be remarked that the basic knowledge collected from complicated area of the structuration process of the organic materials, including the liquid crystal (LC) ones, useful for the optoelectronics and biomedicine, requires extending the types of the novel matrix model materials and the class of the dopants, which can change the spectral and photorefractive features of the matrixes with good advantage. In the current paper the effect of the introduction of the bio-objects (based on DNA) and of the nano-objects (based on fullerenes, quantum dots, carbon nanotubes, shungites, graphenes) in the organic conjugated materials has been comparatively discussed. The influence of this process on the photorefractive features, namely on the laser-induced change of the refractive index, has been studied. The clear innovative tendency of the alternative using of the bio-objects together or instead of the nano-objects ones has been analyzed via considering of the modification of the spectral and non-linear optical characteristics.https://www.mdpi.com/2311-5629/8/3/43organic materialslaser-induced change of the refractive indexdoping processDNAfullerenesquantum dots
spellingShingle Natalia Kamanina
Svetlana Likhomanova
Yulia Zubtsova
Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One
C
organic materials
laser-induced change of the refractive index
doping process
DNA
fullerenes
quantum dots
title Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One
title_full Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One
title_fullStr Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One
title_full_unstemmed Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One
title_short Laser-Induced Refractive Index Indicates the Concurrent Role of the Bio-Structuration Process in the Comparison with the Nano-Structuration One
title_sort laser induced refractive index indicates the concurrent role of the bio structuration process in the comparison with the nano structuration one
topic organic materials
laser-induced change of the refractive index
doping process
DNA
fullerenes
quantum dots
url https://www.mdpi.com/2311-5629/8/3/43
work_keys_str_mv AT nataliakamanina laserinducedrefractiveindexindicatestheconcurrentroleofthebiostructurationprocessinthecomparisonwiththenanostructurationone
AT svetlanalikhomanova laserinducedrefractiveindexindicatestheconcurrentroleofthebiostructurationprocessinthecomparisonwiththenanostructurationone
AT yuliazubtsova laserinducedrefractiveindexindicatestheconcurrentroleofthebiostructurationprocessinthecomparisonwiththenanostructurationone