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Tuning the wetting angle of fluorinated polymer with modified nanodiamonds: towards new type of biosensors

Pavel Valentinovich Melnikov 1
Pavel Valentinovich Melnikov
Anastasia Yur'evna Aleksandrovskaya 1
Anastasia Yur'evna Aleksandrovskaya
Boris Vladimirovich Spitsyn 2
Boris Vladimirovich Spitsyn
Alina Olegovna Naumova 1
Alina Olegovna Naumova
Nikolay Konkordievich Zaitsev 1
Nikolay Konkordievich Zaitsev
Published 2020-06-26
CommunicationVolume 30, Issue 4, 453-455
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Melnikov P. V. et al. Tuning the wetting angle of fluorinated polymer with modified nanodiamonds: towards new type of biosensors // Mendeleev Communications. 2020. Vol. 30. No. 4. pp. 453-455.
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Melnikov P. V., Aleksandrovskaya A. Y., Safonov A. V., Popova N. M., Spitsyn B. V., Naumova A. O., Zaitsev N. K. Tuning the wetting angle of fluorinated polymer with modified nanodiamonds: towards new type of biosensors // Mendeleev Communications. 2020. Vol. 30. No. 4. pp. 453-455.
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TY - JOUR
DO - 10.1016/j.mencom.2020.07.015
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2020.07.015
TI - Tuning the wetting angle of fluorinated polymer with modified nanodiamonds: towards new type of biosensors
T2 - Mendeleev Communications
AU - Melnikov, Pavel Valentinovich
AU - Aleksandrovskaya, Anastasia Yur'evna
AU - Safonov, Alexey Vladimirovich
AU - Popova, Nadezhda Mikhailovna
AU - Spitsyn, Boris Vladimirovich
AU - Naumova, Alina Olegovna
AU - Zaitsev, Nikolay Konkordievich
PY - 2020
DA - 2020/06/26
PB - Mendeleev Communications
SP - 453-455
IS - 4
VL - 30
ER -
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@article{2020_Melnikov,
author = {Pavel Valentinovich Melnikov and Anastasia Yur'evna Aleksandrovskaya and Alexey Vladimirovich Safonov and Nadezhda Mikhailovna Popova and Boris Vladimirovich Spitsyn and Alina Olegovna Naumova and Nikolay Konkordievich Zaitsev},
title = {Tuning the wetting angle of fluorinated polymer with modified nanodiamonds: towards new type of biosensors},
journal = {Mendeleev Communications},
year = {2020},
volume = {30},
publisher = {Mendeleev Communications},
month = {Jun},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2020.07.015},
number = {4},
pages = {453--455},
doi = {10.1016/j.mencom.2020.07.015}
}
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Melnikov, Pavel Valentinovich, et al. “Tuning the wetting angle of fluorinated polymer with modified nanodiamonds: towards new type of biosensors.” Mendeleev Communications, vol. 30, no. 4, Jun. 2020, pp. 453-455. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2020.07.015.

Keywords

adhesion control
biosensor
BOD
fluorinated material
modified nanodiamond
nanodiamond
optical sensor
oxygen sensor
whole cell biosensor

Abstract

A new type of composite oxygen biosensor has been developed. It is based on fine tuning the adhesive and fouling properties of the surface employing modified nanodiamonds with various functional groups. Operability of the sensor has been demonstrated using Pseudomonas putida K12 bacteria.

References

1.
Recent Progress in Biosensors for Environmental Monitoring: A Review
3.
Gorbatov S.A., Kozlov M.A., Zlobin I.E., Kartashov A.V., Zavarzin I.V., Volkova Y.A.
Mendeleev Communications, 2018
4.
Gavrilenko N.A., Volgina T.N., Gavrilenko M.A.
Mendeleev Communications, 2017
6.
Immobilized Enzymes in Biosensor Applications
Nguyen H.H., Lee S.H., Lee U.J., Fermin C.D., Kim M.
Materials, 2019
7.
Biosensors and their applications - A review.
Mehrotra P.
Journal of Oral Biology and Craniofacial Research, 2016
8.
Development and applications of whole cell biosensors for ecotoxicity testing
Pasco N.F., Weld R.J., Hay J.M., Gooneratne R.
Analytical and Bioanalytical Chemistry, 2011
9.
A yeast co-culture-based biosensor for determination of waste water contamination levels
Yudina N.Y., Arlyapov V.A., Chepurnova M.A., Alferov S.V., Reshetilov A.N.
Enzyme and Microbial Technology, 2015
10.
Biosensors based on modified screen-printed enzyme electrodes for monitoring of fermentation processes
Kamanin S.S., Arlyapov V.A., Machulin A.V., Alferov V.A., Reshetilov A.N.
Russian Journal of Applied Chemistry, 2015
11.
Silica sol-gel encapsulated methylotrophic yeast as filling of biofilters for the removal of methanol from industrial wastewater
Kamanina O.A., Lavrova D.G., Arlyapov V.A., Alferov V.A., Ponamoreva O.N.
Enzyme and Microbial Technology, 2016
12.
On-line monitoring of wastewater quality: a review
Bourgeois W., Burgess J.E., Stuetz R.M.
Journal of Chemical Technology and Biotechnology, 2001
13.
BOD biosensor based on the yeast Debaryomyces hansenii immobilized in poly(vinyl alcohol) modified by N-vinylpyrrolidone.
Arlyapov V.A., Yudina N.Y., Asulyan L.D., Alferov S.V., Alferov V.A., Reshetilov A.N.
Enzyme and Microbial Technology, 2013
14.
Fast Ecotoxicity Detection Using Biosensors
Buckova M., Licbinsky R., Jandova V., Krejci J., Pospichalova J., Huzlik J.
Water, Air, and Soil Pollution, 2017
15.
L. S. B. Upadhyay and N. Verma, in Environmental Microbial Biotechnology, eds. L. B. Sukla, N. Pradhan, S. Panda and B. K. Mishra (Soil Biology, ed. A. Varma, vol. 45), Springer, 2015, pp. 77-90.
16.
Composite material for optical oxygen sensor
Antropov A.P., Ragutkin A.V., Melnikov P.V., Luchnikov P.A., Zaitsev N.K.
IOP Conference Series: Materials Science and Engineering, 2018
19.
Optimizing Production Conditions for a Composite Optical Oxygen Sensor Using Mesoporous SiO2
Melnikov P.V., Naumova A.O., Alexandrovskaya A.Y., Zaitsev N.K.
Nanotechnologies in Russia, 2018
20.
Indicators for optical oxygen sensors
Quaranta M., Borisov S.M., Klimant I.
Bioanalytical Reviews, 2012
21.
The Effect of Modified Nanodiamonds on the Wettability of the Surface of an Optical Oxygen Sensor and Biological Fouling During Long-Term in Situ Measurements
Aleksandrovskaya A.Y., Melnikov P.V., Safonov A.V., Abaturova N.A., Spitsyn B.V., Naumova A.O., Zaitsev N.K.
Nanotechnologies in Russia, 2019
22.
Inroad to modification of detonation nanodiamond
Spitsyn B.V., Davidson J.L., Gradoboev M.N., Galushko T.B., Serebryakova N.V., Karpukhina T.A., Kulakova I.I., Melnik N.N.
Diamond and Related Materials, 2006
24.
10.1016/j.mencom.2020.07.015_bib0120
Escamilla-García
Int. J. Microbiol., 2017
25.
A Dissolved Oxygen Analyzer with an Optical Sensor
Zaitsev N.K., Dvorkin V.I., Melnikov P.V., Kozhukhova A.E.
Journal of Analytical Chemistry, 2018