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Wiley电子期刊(7)
NATURE电子期刊(4)
ACS电子期刊(235)
SpringerLink电子期刊(104)
Elsevier电子期刊(312)
在“
Elsevier电子期刊
”中,
命中:
312
条,耗时:0.0419805 秒
在所有数据库中总计命中:
662
条
1.
Band
-
gap
-matched CdSe QD/WS
2
nanosheet composite: Size-controlled photocatalyst for high-efficiency water splitting
作者:
Yueyao Zhong
;
Yongliang Shao
;
Fukun Ma
;
Yongzhong Wu
;
Baibiao Huang
;
Xiaopeng Hao
;
xphao@sdu.edu.cn
关键词:
Quantum
dots
;
WS2 nanosheets
;
Band
gap
energy matched
;
Photocatalytic hydrogen evolution
;
Nanocomposites
刊名:Nano Energy
出版年:2017
2.
Study of thiol capped CdSe
quantum
dots
using SeO
2
precursor for selenium source
作者:
Zubair M.S.H. Khan
a
;
Shamshad A. Khan
b
;
M. Zulfequar
a
;
mzulfe@rediffmail.com" class="auth_mail" title="E-mail the corresponding author
关键词:
Quantum
Dots
(QDs)
;
Dc conductivity
;
Band
gap
刊名:Materials Science in Semiconductor Processing
出版年:2017
3.
Tunable excitonic transitions in strained GaAs ultra-thin
quantum
disk
作者:
M. El-Yadri
a
;
N. Aghoutane
a
;
E. Feddi
a
;
b
;
F. Dujardin
b
;
francis.dujardin@univ-lorraine.fr
关键词:
Exciton
;
Optical
band
gap
;
Pressure
;
Temperature
;
Oscillator strength
刊名:Superlattices and Microstructures
出版年:2017
4.
Influence of elevated radiative lifetime on efficiency of CdSe/CdTe Type II colloidal
quantum
dot based solar cells
作者:
Marina A. Leontiadou
a
;
Edward J. Tyrrell
b
;
Charles T. Smith
a
;
Daniel Espinobarro-Velazquez
a
;
Robert Page
c
;
Paul O׳Brien
c
;
Jacek Miloszewski
b
;
Thomas Walsh
b
;
David Binks
a
;
Stanko Tomić
b
;
s.tomic@salford.ac.uk" class="auth_mail" title="E-mail the corresponding author
关键词:
Efficiency
;
Solar cells
;
Colloidal
quantum
dots
;
Core/shell structure
刊名:Solar Energy Materials and Solar Cells
出版年:2017
5.
Evidence of the formation of small nanostructures in the growth of InGaN/GaN multi-
quantum
wells
作者:
Dipankar Biswas
;
diiibiswas@yahoo.co.in
;
Apu Mistry
apumistry@gmail.com
;
Partha Pratim Bera
pratimpartha.bera@gmail.com
关键词:
Quantum
Well
;
Annealing
;
Interdiffusion
;
Photoluminescence
;
Nanostructures
;
Red-blue shift
刊名:Optik - International Journal for Light and Electron Optics
出版年:2017
6.
H
2
-Ar dilution for improved c-Si
quantum
dots
in P-doped SiN
x
:H thin film matrix
作者:
Jia Liu
a
;
Weijia Zhang
b
;
zwjghx@126.com
;
Shengzhong (Frank) Liu
a
;
c
;
szliu@dicp.ac.cn
;
liusz@snnu.edu.cn
关键词:
c-Si
quantum
dot
;
SiNx
;
H thin film
;
Phosphorus-doping
;
PECVD
刊名:Applied Surface Science
出版年:2017
7.
Controllable transmission photonic
band
gap
and all-
optical
switching behaviors of 1-D InAs/GaAs
quantum
-dot photonic crystal
作者:
Zhenhua Hu
a
;
z.h.hu.phys.dept@whut.edu.cn
;
Bowen Xiang
a
;
Yunsheng Xing
b
关键词:
Transmission spectra
;
Photonic
band
gap
material
;
Quantum
dots
;
Quantum
confined effect
;
Optical
Stark shift
;
All-
optical
switch
刊名:
Optical
Materials
出版年:2016
8.
Tuning the energy
band
gap
of ternary alloyed Cd
1-x
Pb
x
S
quantum
dots
for photovoltaic applications
作者:
Ali Badawi
adaraghmeh@yahoo.com" class="auth_mail" title="E-mail the corresponding author
关键词:
Ternary alloyed Cd1-xPbxS
quantum
dots
solar cells
;
Tuning energy
band
gap
;
SILAR
;
Back recombination rate
刊名:Superlattices and Microstructures
出版年:2016
9.
Photoconductivity of composites based on CdSe
quantum
dots
and low-
band
-
gap
polymers
作者:
Sergey Dayneko
a
;
s.daineko@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Pavel Linkov
a
;
c
;
Igor Martynov
a
;
Alexey Tameev
b
;
Marine Tedoradze
b
;
Pavel Samokhvalov
a
;
Igor Nabiev
a
;
c
;
igor.nabiev@gmail.com" class="auth_mail" title="E-mail the corresponding author
;
Alexander Chistyakov
a
关键词:
Hybrid composite
;
Heterostructure
;
Nanoparticles
;
Photoconductivity
;
Quantum
dots
;
Low-
band
-
gap
polymer
刊名:Physica E: Low-dimensional Systems and Nanostructures
出版年:2016
10.
Mid-infrared luminescence from Sn-modified PbSe
quantum
dots
in silicate glasses
作者:
Jihong Zhang
a
;
Chao Liu
b
;
Jong Heo
a
;
jheo@postech.ac.kr" class="auth_mail" title="E-mail the corresponding author
关键词:
Quantum
dots
;
Photoluminescence
;
Semiconductor
band
gap
;
Lead selenide
刊名:Journal of Non-Crystalline Solids
出版年:2016
1
2
3
4
5
6
7
8
9
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