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Online since: September 2013
Authors: Qian Feng, Yue Hao, Yu Kun Li, Kai Du, Peng Shi, Qiang Wang, Qing Feng
Al
PEDOT:PSS
ITO
Glass
P3HT+GaN
Fig.1 A schematic of side view layer structure
Results and discussion
Fig,2 Current density and voltage characteristics of ITO/PEDOT:PSS/P3HT /Al
and ITO/PEDOT:PSS/P3HT-GaN /Al devices
I-V behavior of the solar cells were investigated under lumination of the solar simulator.Fig.2 presented the photovoltaic response of the device of ITO/P3HT/PEDOT:PSS/Al and ITO/P3HT-GaN/PEDOT:PSS/Al, respectively.
Lechmann,D.kessler,D.Gutmann,Langmuir,Vol.25(2009),p.10202 [2] E.S.Kwak,W.Lee,N.G.Park,J.Kim,H.Lee, Advanced Functional Materials,Vol.19 (2009), p.1093, [3] W.J.Sung,S.H.Hyun,D.H.Kim,D.S.Kim,J.Ryu,Science,Vol.44(2009),p.3997 [4] R.Chandrasekar,L.F.Zhang,J.Y.Howe,N.E.Hedin,Y.Zhang,H.Fong,Journal of Materials Science,Vol.44(2009),p.1198 [5] S.K.Hau,H.I.Yip,O.Acton,N.S.Baek,H.Ma,A.Jen,Journal of Materials Chemistry, Vol.18(2008),p.5113 [6] L.Gao,B.Tong,G.J.Yao,Y.P.Dong,M.F.Zhang,J.Lam.
Lechmann,D.kessler,D.Gutmann,Langmuir,Vol.25(2009),p.10202 [2] E.S.Kwak,W.Lee,N.G.Park,J.Kim,H.Lee, Advanced Functional Materials,Vol.19 (2009), p.1093, [3] W.J.Sung,S.H.Hyun,D.H.Kim,D.S.Kim,J.Ryu,Science,Vol.44(2009),p.3997 [4] R.Chandrasekar,L.F.Zhang,J.Y.Howe,N.E.Hedin,Y.Zhang,H.Fong,Journal of Materials Science,Vol.44(2009),p.1198 [5] S.K.Hau,H.I.Yip,O.Acton,N.S.Baek,H.Ma,A.Jen,Journal of Materials Chemistry, Vol.18(2008),p.5113 [6] L.Gao,B.Tong,G.J.Yao,Y.P.Dong,M.F.Zhang,J.Lam.
Online since: October 2014
Authors: Yong Zhe Fan, Rui Na Ma, Peng Zheng, Xiao Ming Cao, An Du
Typical lamellar eutectics with compact structure consist of zinc-rich α-Zn phase and aluminum-rich β-Al phase can be found in the overlay coating [4].
XPS study of the surface chemistry of conventional hot-dip galvanised pure Zn, galvanneal and Zn–Al alloy coatings on steel.
XPS study of the surface chemistry of conventional hot-dip galvanised pure Zn, galvanneal and Zn–Al alloy coatings on steel.
Online since: April 2013
Authors: Yi Ding Shen, Ying Su, Xiao Rong Wang, Feng San Zhang, Guan Jun Liu, Lei Wang, Xiao Juan Lai
Surface Properties and Application of Fluorinated Emulsifier- free Emulsion Surface Sizing Agent
Ying Su1,a, Yiding Shen2,b, Lei Wang3,c,Xiaorong Wang4,d,
Xiaojuan Lai5,e, Fengsan Zhang6,f,Guanjun Liu7,g
Key laboratory of Auxiliary Chemistry & technology for Chemical Industry,Ministry of Education, Shaanxi university of Science & technology, Xi'an, Shaanxi Provence, People’s Republic of China
alee.echo@163.com, bydshen@sust.edu.cn, c3578466@163.com, dxiaorongsagittarius@126.com,
elaixiaojuan@sust.edu.cn,fzhangfengsan911@126.com,glgjunde@163.com
Keywords: fuorinated emulsifier-free emulsion; fuorinated random amphiphilic polymer; surface sizing agent; surface property; contact angle
Abstract.
To the paper sized with the pure oxide starch emulsion, water droplets could rapidly spread and penetrate into its inner structure.
To the paper sized with the pure oxide starch emulsion, water droplets could rapidly spread and penetrate into its inner structure.
Online since: February 2012
Authors: Jie Ren Yang, Yan Qing Su, Rui Run Chen, Jing Jie Guo, Hong Sheng Ding, Heng Zhi Fu, Feng Huang
Introduction
Cold crucible directional solidification (DS) has been an advanced technology to prepare high temperature structure materials such as titanium (Ti) alloys and titanium-aluminium based alloys which are potential materials in the field of aero engine, marine and automobile [1-3].
Materials Chemistry and Physics. 126(2011), p. 200 [9] X.W.
Materials Chemistry and Physics. 126(2011), p. 200 [9] X.W.
Online since: March 2013
Authors: V. Narayanan, L. Vijayalakshmi, A. Stephen, K. Giribabu, Suresh Ranganathan
Narayanan1*
1Department of Inorganic Chemistry, University of Madras, Guindy Campus, Chennai 600025 Tamil Nadu, India
2CSI Ewart Women’s Christian College, Melrosapuram, Kancheepuram 603204
Tamil Nadu, India
3Department of Nuclear Physics, University of Madras, Guindy Campus, Chennai 600025
Tamil Nadu, India
avigneshgiribabu@gmail.com, bsureshinorg@gmail.com clvniji53@yahoo.in,
dstephen_arum@hatmail.com, e*vnnara@yahoo.co.in
Keywords: CdO, Electrocatalyst, 4-Nitrophenol, 2-Nitrophenol
Abstract.
The phase and structure of CdO was analyzed by a Rich Siefert 3000 diffractometer with Cu-Kα1 radiation (λ = 1.5418 Å).
The phase and structure of CdO was analyzed by a Rich Siefert 3000 diffractometer with Cu-Kα1 radiation (λ = 1.5418 Å).
Online since: May 2012
Authors: Guang Liang Niu, Ting Li, Zhi Yuan Ma, Hua Yan
Fig.o1 Geological structures of Xianyang urban area and distribution of sampling points
(F1: Wei River fault;F2:Chang'an-Xianyang fault;F4:West shore of Feng River fault,the same below)
The hydrogeochemical characteristics and their instruction meaning of geothermal water
Water chemical types and their advantages ion distribution of geothermal water in Xianyang urban area are showed as Figure 2 .
The Use of Gas Chemistry in Delineating the Origin of Fluids Discharged Over the Taupo Volcanic Zone[J], In Proceedings of 5th International Volcanic Congress, Auck land P〔s. n.〕K,1986,47~50
The Use of Gas Chemistry in Delineating the Origin of Fluids Discharged Over the Taupo Volcanic Zone[J], In Proceedings of 5th International Volcanic Congress, Auck land P〔s. n.〕K,1986,47~50
Online since: February 2016
Authors: V.D. Kitler, A.I. Kirdyashkin, A.S. Maznoy, L.N. Vosmerikova, Ya.E. Barbashin, Yu.A. Knysh, O.I. Sidorova, Aleksandr V. Vosmerikov
., 8
3 Institute of Petroleum Chemistry SB RAS, 634021 Russia, Tomsk, Akademicheskiy Av., 4
4 Tomsk State University, 634050 Russia, Tomsk, Lenina Av.,36
5 Samara State Aerospace University, 443086 Russia, Samara, Moskovskoye shosse, 34
a maznoy_a@mail.ru (corresponding author), b pika@ipc.tsc.ru, c knysh194@mail.ru
Keywords: porous catalyst, porous materials, combustion synthesis, syngas.
For preparing the combustion synthesized materials with macroporous structure a special component, which evaporate in the combustion wave, was added to the green mixture.
For preparing the combustion synthesized materials with macroporous structure a special component, which evaporate in the combustion wave, was added to the green mixture.
Online since: August 2013
Authors: Jian Li Yang, Xi Yuan Yang, Mei Li Du, Jin Ren Zhang
Study on Coal Separability for Wangcun Inclined Shaft in Chenghe
Xiyuan Yang1,a, Meili Du, Jinren Zhang and Jianli Yang
1 School of Chemistry and Chemical Engineering, Xi′an University of Science and Technology, Xi′an 710054, China
ayzr468@126.com
Keywords: Coal Quality Characteristics; Separability; Screening Test; Wangcun Inclined Shaft in Chenghe
Abstract: On the basis of the coal quality characteristics, the screening and drifting tests have been carried out to investigate the separability of the coals in the inclined shaft coal samples of Chenghe Wangcun coal mine.
Structural form basically is a tendency of monoclinic structure NNW 60-80 inclination, coal-bearing strata of the Upper Carboniferous Taiyuan Formation [2].
Structural form basically is a tendency of monoclinic structure NNW 60-80 inclination, coal-bearing strata of the Upper Carboniferous Taiyuan Formation [2].
Online since: June 2008
Authors: Hu Lin Li, Tao Liu, Sha Cheng, Kin Tak Lau, Yong Qing Zhao, Pou Man Lam
Production of a Green Composite: Mixture of Poly (latic acid) and
Keratin fibers from Chicken Feathers
Yong-Qing Zhao1,a,b
, Kin-Tak Lau
2,b, Tao Liu
3,b,c
, Sha Cheng
4,b,c, Pou-Man
Lam
5,b, Hu-Lin Li6,a
a
College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou, 730000, China
b
Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hung Hom,
Kowloon, Hong Kong SAR, China
c
Institute of Materials Science and Engineering, Ocean University of China, Qingdao 266100, China
1
mmzhaoyq@polyu.edu.hk, 2mmktlau@polyu.edu.hk, 3mmliutao@polyu.edu.hk,
4
mmscheng@polyu.edu.hk,
5
mmpmlam@polyu.edu.hk,
6
lihl@lzu.edu.cn
Keywords: Biocomposites, Keratin biofibers, Poly (lactic acid), Mechanical properties
Abstract
A new biocomposite based on chicken feather fiber (CFF) and Poly (lactic acid) (PLA) was
fabricated for the first time by melting compound methods.
Fibers from chicken feathers have several distinctive features such as surface toughness, flexibility, high length to diameter ratio, hydrophobicity and a highly organized morphology characterized by its complex hierarchical structure [5].
Fibers from chicken feathers have several distinctive features such as surface toughness, flexibility, high length to diameter ratio, hydrophobicity and a highly organized morphology characterized by its complex hierarchical structure [5].