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Wiley电子期刊(10)
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在“
Elsevier电子期刊
”中,
命中:
332
条,耗时:0.0539773 秒
在所有数据库中总计命中:
566
条
1.
Intensity-based plastic
optical
fiber sensor with molecularly imprinted
polymer
sensitive layer
作者:
N. Cennamo
a
Author Vitae
;
G. Testa
b
Author Vitae
;
S. Marchetti
c
Author Vitae
;
L. De Maria
d
Author Vitae
;
R. Bernini
b
Author Vitae
;
L. Zeni
a
;
b
;
luigi.zeni@unina2.it
Author Vitae
;
M. Pesavento
c
Author Vitae
关键词:
Dibenzyl disulfide (DBDS)
;
Optical
chemical sensors
;
Molecularly imprinted
polymer
(MIP)
;
Plastic
optical
fibers
(POFs)
;
Remote sensing
刊名:Sensors and Actuators B: Chemical
出版年:2017
2.
Numerical and experimental approach to testing the adhesive properties of modified
polymer
blend based on EVA/PMMA as coatings for
optical
fibers
作者:
Nata&scaron
;
a Z. Tomić
a
;
ntomic@tmf.bg.ac.rs
;
Đorđe Veljović
b
;
Kata Trifković
b
;
Bojan Međo
b
;
Marko Rakin
b
;
Vesna Radojević
b
;
Radmila Jančić-Heinemann
b
关键词:
EVA
;
poly(ethylene-co-vinyl acetate)
;
PMMA
;
poly(methyl methacrylate)
;
MMA
;
methyl methacrylate
;
MEKP
;
methyl ethyl ketone peroxide
;
FTIR
;
Fourier transform of infrared light
;
DSC
;
differential scanning calorimetry
;
FEM
;
finite element modeling
;
SEM
;
scanning electron microscopy
刊名:International Journal of Adhesion and Adhesives
出版年:2017
3.
Dye-doped submicron fiber waveguides composed of hole- and electron-transport materials
作者:
Yuya Ishii
;
yishii@ee.tut.ac.jp
;
Keisho Omori
;
Shota Satozono
;
Mitsuo Fukuda
关键词:
Submicron
fibers
;
Waveguide
;
Loss coefficient
;
Hole- and electron-transport materials
;
Organic dyes
;
Electrospinning
刊名:Organic Electronics
出版年:2017
4.
Molecular alignment relaxation in
polymer
optical
fibers
for sensing applications
作者:
Pavol Stajanca
a
;
pavol.stajanca@bam.de" class="auth_mail" title="E-mail the corresponding author
;
Onur Cetinkaya
b
;
onur.cetinkaya@poczta.umcs.lublin.pl" class="auth_mail" title="E-mail the corresponding author
;
Marcus Schukar
a
;
marcus.schukar@bam.de" class="auth_mail" title="E-mail the corresponding author
;
Pawel Mergo
b
;
pawel.mergo@poczta.umcs.lublin.pl" class="auth_mail" title="E-mail the corresponding author
;
David J. Webb
c
;
d.j.webb@aston.ac.uk" class="auth_mail" title="E-mail the corresponding author
;
Katerina Krebber
a
;
katerina.krebber@bam.de" class="auth_mail" title="E-mail the corresponding author
关键词:
Polymer
optical
fibers
;
Optical
fiber sensor climatic stability
;
Thermal annealing
;
Molecular alignment relaxation
;
Humidity induced annealing
刊名:
Optical
Fiber Technology
出版年:2016
5.
Novel
Optical
Chemical Sensor Based on Molecularly Imprinted
Polymer
Inside a Trench Micro-machined in Double Plastic Optical Fiber
作者:
Nunzio Cennamo
a
;
nunzio.cennamo@unina2.it
;
Genni Testa
b
;
Simone Marchetti
c
;
Letizia De Maria
d
;
Romeo Bernini
b
;
Luigi Zeni
a
;
Maria Pesavento
c
关键词:
Plastic
optical
fiber
;
Molecularly imprinted
polymer
;
Dibenzyl disulfide (DBDS)
;
Optical
chemical sensors
;
Transformer oil
刊名:Procedia Engineering
出版年:2016
6.
Effects of gamma radiation on perfluorinated
polymer
optical
fibers
作者:
Pavol Stajanca
a
;
pavol.stajanca@bam.de" class="auth_mail" title="E-mail the corresponding author
;
Laura Mihai
b
;
laura.mihai@inflpr.ro" class="auth_mail" title="E-mail the corresponding author
;
Dan Sporea
b
;
dan.sporea@inflpr.ro" class="auth_mail" title="E-mail the corresponding author
;
Daniel Neguţ
c
;
dnegut@nipne.ro" class="auth_mail" title="E-mail the corresponding author
;
Heinz Sturm
a
;
heinz.sturm@bam.de" class="auth_mail" title="E-mail the corresponding author
;
Marcus Schukar
a
;
marcus.schukar@bam.de" class="auth_mail" title="E-mail the corresponding author
;
Katerina Krebber
a
;
katerina.krebber@bam.de" class="auth_mail" title="E-mail the corresponding author
关键词:
Perfluorinated
polymer
optical
fibers
;
Cytop
;
Gamma radiation
;
Radiation-induced attenuation
刊名:
Optical
Materials
出版年:2016
7.
Characterization of the
optical
gain in doped
polymer
optical
fibres
作者:
I. Parola
a
;
M.A. Illarramendi
a
;
ma.illarramendi@ehu.eus" class="auth_mail" title="E-mail the corresponding author
;
J. Arrue
b
;
I. Ayesta
c
;
F. Jimé
;
nez
c
;
J. Zubia
b
;
A. Tagaya
d
;
Y. Koike
d
关键词:
Light-emitting
polymer
s
;
Polymer
optical
fibers
;
Amplified spontaneous emission
;
Optical
gain
;
Variable stripe length method
;
Rhodamine 6G
刊名:Journal of Luminescence
出版年:2016
8.
A comparative study of the performance of graded index perfluorinated plastic and alumino silicate
optical
fibers
in internal
optical
interconnections
作者:
Ahmed Nabih Zaki Rashed
a
;
ahmed_73355@yahoo.com" class="auth_mail" title="E-mail the corresponding author
;
ahmed_733@yahoo.com" class="auth_mail" title="E-mail the corresponding author
;
Abd El-Naser Abd El Gawad Mohamed
a
;
Sakr Abd El Rahim Salman Hanafy
a
;
Moustafa H. Aly
b
关键词:
Optical
fiber communication
;
Optical
fiber dispersion
;
Optical
interconnections
;
Optical
computing
;
Optical
fibers
;
Optical
fiber applications
;
Optical
losses
;
Optical
polymer
s
刊名:Optik - International Journal for Light and Electron Optics
出版年:2016
9.
Microfiber as light source for exciting fluorescence in a
polymer
optical
fiber
作者:
E. Rodrí
;
guez-Schwendtner
a
Author Vitae
;
M.C. Navarrete
a
Author Vitae
;
N. Dí
;
az-Herrera
b
;
ndiazher@ucm.es" class="auth_mail" title="E-mail the corresponding author
Author Vitae
;
Ó
;
. Esteban
c
Author Vitae
;
A. Gonzá
;
lez-Cano
b
Author Vitae
关键词:
Fluorescence
;
Polymer
optical
fiber
;
Microfiber
刊名:Sensors & Actuators: B. Chemical
出版年:2016
10.
Polymer
waveguides self-organized by two-photon photochemistry for self-aligned
optical
couplings with wide misalignment tolerances
作者:
Tetsuzo Yoshimura
a
;
tetsu@cs.teu.ac.jp" class="auth_mail" title="E-mail the corresponding author
;
kekyoandyoritan@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Daisuke Takeda
a
;
Takuya Sato
a
;
Yoshihiko Kinugasa
a
;
Hideyuki Nawata
b
;
nawatahide@nissanchem.co.jp" class="auth_mail" title="E-mail the corresponding author
关键词:
Self-organized lightwave network
;
Self-aligned
optical
couplings
;
Polymer
waveguides
;
Two-photon photochemistry
;
Nano-scale waveguides
刊名:Optics Communications
出版年:2016
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