Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution

The possibility of using the principle of photoelectric conversion in structures with a deep p-n junction to control the content of carbon nanotubes with adsorbed surfactant (SDBS) in an aqueous solution was shown. Experimental studies of the analyte influence on the change in the photocurrent throu...

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Main Authors: A.I.В Manilov, A.V.В Kozinetz, I.V.В Gavrilchenko, Y.S.В Milovanov, T.M.В Mukhamedzhanov, S.A.В Alekseev, M.В Al Araimi, S.V.В Litvinenko, A.В Rozhin, V.A.В Skryshevsky
Format: Article
Language:English
Published: Sumy State University 2017-07-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua:8080/download/numbers/2017/4/articles/jnep_V9_04020.pdf
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author A.I.В Manilov
A.V.В Kozinetz
I.V.В Gavrilchenko
Y.S.В Milovanov
T.M.В Mukhamedzhanov
S.A.В Alekseev
M.В Al Araimi
S.V.В Litvinenko
A.В Rozhin
V.A.В Skryshevsky
author_facet A.I.В Manilov
A.V.В Kozinetz
I.V.В Gavrilchenko
Y.S.В Milovanov
T.M.В Mukhamedzhanov
S.A.В Alekseev
M.В Al Araimi
S.V.В Litvinenko
A.В Rozhin
V.A.В Skryshevsky
author_sort A.I.В Manilov
collection DOAJ
description The possibility of using the principle of photoelectric conversion in structures with a deep p-n junction to control the content of carbon nanotubes with adsorbed surfactant (SDBS) in an aqueous solution was shown. Experimental studies of the analyte influence on the change in the photocurrent through a deep p-n junction were carried out. A shift in the dependence of the photocurrent on the voltage applied to the surface of the sensor structure due to the presence of carbon nanotubes in the solution was recorded. The change in the effective recombination rate, which corresponds to the distribution of the photocurrent at the surface, can be attributed to a change in the near-surface band bending.
format Article
id doaj-art-b58a6958f94a48509ec33b2a1d1a85f2
institution DOAJ
issn 2077-6772
language English
publishDate 2017-07-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-b58a6958f94a48509ec33b2a1d1a85f22025-08-20T03:04:37ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722017-07-019404020-104020-610.21272/jnep.9(4).04020Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous SolutionA.I.В Manilov0A.V.В Kozinetz1I.V.В Gavrilchenko2Y.S.В Milovanov3T.M.В Mukhamedzhanov4S.A.В Alekseev5M.В Al Araimi6S.V.В Litvinenko7A.В Rozhin8V.A.В Skryshevsky9Institute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineInstitute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineInstitute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineInstitute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineInstitute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineChemical Faculty, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineNanotechnology Research Group, Aston Institute of Photonic Technologies, School of Engineering; Applied Science, Aston University, Aston Triangle, B4 7ET Birmingham, UKInstitute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineNanotechnology Research Group, Aston Institute of Photonic Technologies, School of Engineering; Applied Science, Aston University, Aston Triangle, B4 7ET Birmingham, UKInstitute of High Technologies, Taras Shevchenko National University of Kyiv, 64, Volodymyrska Str., 01033 Kyiv, UkraineThe possibility of using the principle of photoelectric conversion in structures with a deep p-n junction to control the content of carbon nanotubes with adsorbed surfactant (SDBS) in an aqueous solution was shown. Experimental studies of the analyte influence on the change in the photocurrent through a deep p-n junction were carried out. A shift in the dependence of the photocurrent on the voltage applied to the surface of the sensor structure due to the presence of carbon nanotubes in the solution was recorded. The change in the effective recombination rate, which corresponds to the distribution of the photocurrent at the surface, can be attributed to a change in the near-surface band bending.http://jnep.sumdu.edu.ua:8080/download/numbers/2017/4/articles/jnep_V9_04020.pdfSensorCarbon nanoparticlesPhotocurrentSurface recombination rateDeep p-n junctio
spellingShingle A.I.В Manilov
A.V.В Kozinetz
I.V.В Gavrilchenko
Y.S.В Milovanov
T.M.В Mukhamedzhanov
S.A.В Alekseev
M.В Al Araimi
S.V.В Litvinenko
A.В Rozhin
V.A.В Skryshevsky
Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution
Журнал нано- та електронної фізики
Sensor
Carbon nanoparticles
Photocurrent
Surface recombination rate
Deep p-n junctio
title Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution
title_full Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution
title_fullStr Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution
title_full_unstemmed Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution
title_short Photoelectric Signal Conversion in Deep p-n Junction for Detection of Carbon Nanotubes with Adsorbed SDBS in Aqueous Solution
title_sort photoelectric signal conversion in deep p n junction for detection of carbon nanotubes with adsorbed sdbs in aqueous solution
topic Sensor
Carbon nanoparticles
Photocurrent
Surface recombination rate
Deep p-n junctio
url http://jnep.sumdu.edu.ua:8080/download/numbers/2017/4/articles/jnep_V9_04020.pdf
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