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[13] G. M. Shukla, N. Punjabi, T. Kundu and S. Mukherji,
" Optimization of plasmonic U-shaped optical fiber sensor
for Mercury ions detection using glucose capped silver
nanoparticles, " IEEE Sens. J., vol. 19, pp. 3224-3231, 2019.
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[14] R. J. Bartlett, R. Philip-Chandy, P. Eldridge, D. F. Merchand, R.
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[15] B. S. Boruah and R. Biswas, " Localized surface plasmon
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[16] N. Cennamo, D. Massarotti, L. Conte, and L. Zeni, " Low cost
sensors based on SPR in a plastic optical fiber for biosensor
implementation, " Sensors, vol. 11, pp. 11752-11760, 2011.
[17] N. Cennamo, L. Pasquardini, F. Arcadio, L. E. Vanzetti, A. M.
Bossi and L. Zeni, " D-shaped plastic optical fibre aptasensor for
fast thrombin detection in nanomolar range, " Sci. Rep., vol. 9, p.
18740, 2019.
[18] L. Zeni, C. Perri, N. Cennamo, F. Arcadio, G. D'Agostino, M.
Salmona, M. Beeg and M. Gobbi, " A portable optical-fibrebased
surface plasmon resonance biosensor for the detection
of therapeutic antibodies in human serum, " Sci. Rep., vol. 10, p.
11154, 2020.
[19] N. Cennamo, G. D'Agostino, F. Sequeira, F. Mattiello, G. Porto, A.
Biasiolo, R. Nogueira, L. Bilro, and L. Zeni, " A simple and lowcost
optical fiber intensity-based configuration for perfluorinated
compounds in water solution, " Sensors, vol. 18, p. 3009, 2018.
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Porto, A. Biasiolo, and L. Zeni, " Towards smart selective sensors
exploiting a novel approach to connect optical fiber biosensors
in Internet, " IEEE Trans. Instrum. Meas., vol. 69, no. 10, pp. 80098019,
Oct. 2020.
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and B. Man, " Sensitive and selective surface plasmon resonance
sensor employing a gold-supported graphene composite film/Dshaped
fiber for dopamine detection, " J. Phys. D: Appl. Phys., vol.
52, p. 195402, 2019.
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" Molecularly-imprinted polymers: useful sorbents for selective
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and L. Zeni, " Sensors based on surface plasmon resonance in
a plastic optical fiber for the detection of trinitrotoluene, " Sens.
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Dacarro, L. Zeni and M. Pesavento, " Sensitive detection
of 2,4,6-trinitrotoluene by tridimensional monitoring of
molecularly imprinted polymer with optical fiber and five54
[28]
N. Cennamo, F. Arcadio, C. Perri, L. Zeni, F. Sequeira, L. Bilro,
R. Nogueira, G. D'Agostino, G. Porto and A. Biasiolo, " Water
monitoring in smart cities exploiting plastic optical fibers and
molecularly imprinted polymers: the case of PFBS detection, " in
Proc. IEEE Int. Symp. Meas. Networking (M&N), 2019.
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F. Arcadio, and L. Zeni, " A molecularly imprinted polymer
on a plasmonic plastic optical fiber to detect perfluorinated
compounds in water, " Sensors, vol. 18, p. 1836, 2018.
Chiara Perri is currently a Ph.D. candidate in the Department
of Industrial and Information Engineering at the University of
Campania Luigi Vanvitelli, Italy, working on SPR biosensors
based on plastic optical fibers and bio-chemical receptors. She
is also cofounder of the Spin-Off company MORESENSE SRL.
She earned a degree in industrial biotechnology from the University
of Milan-Bicocca, Italy in 2017.
Francesco Arcadio is a Ph.D. student at the University of Campania
Luigi Vanvitelli, Italy, where he received the degree in
electronic engineering in 2018. His research interests include
the design and fabrication of optical sensors and biosensors.
He is also cofounder of the Spin-Off company MORESENSE
SRL.
Girolamo D'Agostino is Co-founder and Chief Chemist
at MORESENSE SRL where his work focuses on the
development of electrochemical and optical sensors based on
polymeric molecular receptors and the synthesis of specific
adsorbent materials for analytes of environmental interest. He
graduated with a degree in chemistry from the University of
Pavia, Italy in 2002, and he obtained his Ph.D. degree in chemical
sciences there in 2006. Until 2013, he carried out research
related to sensors at the University of Pavia in collaboration
with other Italian universities.
Nunzio Cennamo is a Professor in the Department of Engineering
at University of Campania Luigi Vanvitelli, Italy and is also
Co-founder of MORESENSE SRL. He received a degree in electronic
engineering in 2002 and the Ph.D. degree in electronic
engineering in 2005, both from Second University of Naples,
Italy. His research interests include the design and fabrication
of optical sensors, chemical sensors, biosensors and optoelectronic
devices.
Giovanni Porto has been working as a Project Manager at
the COPERNICO SCARL CONSORTIUM (now COPERNICO
SRL) since 2004 and is CEO of MORESENSE SRL. He
graduated in geological sciences in 1992 at the University of
Milan, Italy and has been registered in the Professional Register
of Geologists of Lombardy since May 1994. He has carried
out professional activity in the private and public sectors, including
remediation, hydrogeology, environmental geology,
territorial planning and professional training.
IEEE Instrumentation & Measurement Magazine
August 2021
Instrumentation & Measurement Magazine 24-5
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