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Online since: August 2013
Authors: Cheng Dong, Pei Chen, Xi Kang Yan, Kang Ma
Experimental material
Concrete materials: Concrete design strength grade C30, ordinary Portland cement 32.5 is used by the company of ji dong cement .
Material performance of reinforcement are shown in Table 2.
Acknowledgements This work was financially supported by the Tianjin Natural Science Foundation (11JCYBJC03100).
Journal of water conservancy and architectural engineering, 2010, 8 (1): 160-163,in Chinese [2] Liping Wang,Yingmin Li,Nina Zheng,Liping Liu,Jun Han,Jianwei Liu.
Science and technology journal of Xian building university (natural science edition), 2009, 41 (6) : 822-826,in Chinese [3] Weijian Yi.
Material performance of reinforcement are shown in Table 2.
Acknowledgements This work was financially supported by the Tianjin Natural Science Foundation (11JCYBJC03100).
Journal of water conservancy and architectural engineering, 2010, 8 (1): 160-163,in Chinese [2] Liping Wang,Yingmin Li,Nina Zheng,Liping Liu,Jun Han,Jianwei Liu.
Science and technology journal of Xian building university (natural science edition), 2009, 41 (6) : 822-826,in Chinese [3] Weijian Yi.
Online since: December 2010
Authors: Xin Tang Wang, Wan Zhen Wang, You Qian Huang, Ren Quan Su
Acknowledgements
This research was sponsored by Chinese Natural Science Foundation (Grant No. 50808098), Natural Science Foundation of Ningbo City (Grant No. 2010A610082) and Science Foundation of Ningbo University (Grant No.
Mackenzie, in: Journal of Mechanics and Physics of Solids.
Wang, in: Journal of Xi’an Jiaotong University.
Wang, in: Fatigue & Fracture of Engineering Materials & Structures.
Feng, in: Advanced Material Research.
Mackenzie, in: Journal of Mechanics and Physics of Solids.
Wang, in: Journal of Xi’an Jiaotong University.
Wang, in: Fatigue & Fracture of Engineering Materials & Structures.
Feng, in: Advanced Material Research.
Online since: August 2013
Authors: Shi Cun Qu, Xiao Na Lu, Zhi Yuan Yang
Compared with other doped materials, the titanium oxide powder doped with Ce-0.05% has the largest size; the size distribution is most inhomogeneous
Acknowledgement The project was sponsored by the Shaanxi Key Scientific and Technological Project, China (No. 2010K07-20) and the National Science and Technology Major Project (No. 2011ZX05037-003), as authors, we thank them for their financial support.
[2] Jin-Koo Park, Jong-Kil Kim, Ho-Kun Kim.TiO2–SiO2 composite filler for thin paper [J].Journal of Materials Processing Technology, 2007, 186:367-369
Journal of Chromatography A, 2011, 1218(20): 2944–2953
Carrier transport in high-efficiency ZnO/SiO2/Si solar cells [J].Science Direct, 2006:3261-3267
Acknowledgement The project was sponsored by the Shaanxi Key Scientific and Technological Project, China (No. 2010K07-20) and the National Science and Technology Major Project (No. 2011ZX05037-003), as authors, we thank them for their financial support.
[2] Jin-Koo Park, Jong-Kil Kim, Ho-Kun Kim.TiO2–SiO2 composite filler for thin paper [J].Journal of Materials Processing Technology, 2007, 186:367-369
Journal of Chromatography A, 2011, 1218(20): 2944–2953
Carrier transport in high-efficiency ZnO/SiO2/Si solar cells [J].Science Direct, 2006:3261-3267
Online since: January 2017
Authors: Xin Yi Wang, Bin Li, Xiao Gang Yang
Effect of Mixing Ratio and Doping Acid on the Photocatalytic Properties of PANI-BiVO4 Composites
Bin Li1,a, Xin-yi Wang2, b and Xiao-gang Yang2, c
1College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao
2College of Environment and Safety Engineering,Qingdao University of Science and Technology, Qingdao
albyxg95@126.com, blucy_qingj@163.com, cyxg95@126.com
Keywords: BiVO4, Polyaniline, Degradation, Blend
Abstract.
Therefore, the composite exhibits higher catalytic activity than the pure photocatalytic material.
[2] M.Shang, W.Z.Wang, S.M.Sun, J.Ren, L.Zhou and L.Zhang: Journal of Physical Chemistry C, Vol. 113 (2009), p.20228
[4] J.Guo, Y.Zhu, Y.M.Zhang, M.Y.Li and J.Yang: Journal of Inorganic Materials, Vol. 27 (2012), No.1, p.26.
Therefore, the composite exhibits higher catalytic activity than the pure photocatalytic material.
[2] M.Shang, W.Z.Wang, S.M.Sun, J.Ren, L.Zhou and L.Zhang: Journal of Physical Chemistry C, Vol. 113 (2009), p.20228
[4] J.Guo, Y.Zhu, Y.M.Zhang, M.Y.Li and J.Yang: Journal of Inorganic Materials, Vol. 27 (2012), No.1, p.26.
Online since: May 2011
Authors: Xiu Fang Zhang, Shi Lang Xu
ACI Materials Journal, Vol. 99, No. 1, (2002), p. 11
Materials and Structures, Vol. 39, (2006), p. 547
Advanced Materials Research, Vol. 150-151, (2011, online), p. 229
ASCE Journal of Materials in Civil Engineering, Vol. 6, No. 4, (1994), p. 513
ASCE Journal of Materials in Civil Engineering, Vol. 22, No. 10, (2010), p. 1067.
Materials and Structures, Vol. 39, (2006), p. 547
Advanced Materials Research, Vol. 150-151, (2011, online), p. 229
ASCE Journal of Materials in Civil Engineering, Vol. 6, No. 4, (1994), p. 513
ASCE Journal of Materials in Civil Engineering, Vol. 22, No. 10, (2010), p. 1067.
Online since: July 2012
Authors: Tadeusz Uhl, Łukasz Pieczonka, Mariusz Szwedo
-P., 2005, Vibration-Based Structural Health Monitoring – Concepts and Applications, Key Engineering Materials, Vol. 293-294, pp. 3-20
ASNT Materials Evaluation, Vol.65(7), pp. 690-696
Journal of Applied Physics, Vol. 98
Journal of Applied Physics, Vol. 99
Series: Materials Science and Engineering, Vol. 10(012062)
ASNT Materials Evaluation, Vol.65(7), pp. 690-696
Journal of Applied Physics, Vol. 98
Journal of Applied Physics, Vol. 99
Series: Materials Science and Engineering, Vol. 10(012062)
Online since: April 2015
Authors: Zhi Feng Zhang, Jun Xu, Xue Kong, Bi Cheng Yang
Materials Science and Engineering A, 2003, 363:193−202
Materials Science and Technology, 2003, 19: 915−918
Journal of Materials Processing Technology, 2005, 167:103−109
Journal of Materials Processing Technology, 2003, 135:271−277
Journal of Materials Processing Technology, 2008, 207: 200−203
Materials Science and Technology, 2003, 19: 915−918
Journal of Materials Processing Technology, 2005, 167:103−109
Journal of Materials Processing Technology, 2003, 135:271−277
Journal of Materials Processing Technology, 2008, 207: 200−203
Online since: September 2013
Authors: Shi Jun Ni, Ke Hui Qiu, Jun Feng Li, Yu Chong Qiu, Pei Cong Zhang, Miao Deng
About the first author: Peicong Zhang, female, 39-years-old, associate professor and doctor in geochemistry, major in material science with specialty in material science and geochemistry.
Beijing: Science Press, 145-172, 234-257.
Environmental Earth Sciences, 2012, 65(4): 1265-1274
Chinese Journal of Environmental Science, 1993, 14(5): 85-89.
Journal of Nuclear and Radiochemistry, 2006, 28(4): 225-230.
Beijing: Science Press, 145-172, 234-257.
Environmental Earth Sciences, 2012, 65(4): 1265-1274
Chinese Journal of Environmental Science, 1993, 14(5): 85-89.
Journal of Nuclear and Radiochemistry, 2006, 28(4): 225-230.
Online since: May 2011
Authors: Jian Hua Liu, Tao Qi, Jing Long Chu, Tian Yan Xue, Yan Fang Han
Recently, a novel metallurgical process for production of TiO2 has been developed by the Institute of Process Engineering, Chinese Academy of Science [5].
Reference to the above process, a hydrometallurgical pretreatment process of titanium slag was carried out in order to selectively remove silicon and improve the quality of raw materials for the production of titanium dioxide pigment.
Experimental section Materials characterization The titanium slag used in this work was bought from Australia.
The Chinese Journal of Process Engineering.
Journal of Materials Science Vol. 42(2006), p. 2967
Reference to the above process, a hydrometallurgical pretreatment process of titanium slag was carried out in order to selectively remove silicon and improve the quality of raw materials for the production of titanium dioxide pigment.
Experimental section Materials characterization The titanium slag used in this work was bought from Australia.
The Chinese Journal of Process Engineering.
Journal of Materials Science Vol. 42(2006), p. 2967
Online since: August 2013
Authors: Lu Yan, Xiao Wang, Xiao Ling Zhao, Yu Zhi Zhang, Yun Zhen Cao
Thermochromic Properties of VO2 films Deposited on Quartz glass
Xiaoling Zhao1, a, Yuzhi Zhang1, b,Yunzhen Cao1,c,Lu Yan1,d, Xiao Wang1,e
1Key Laboratory of Inorganic Coating Materials, Chinese Academy of Sciences, Shanghai 200050, China
a zhaoxllf@student.sic.ac.cn,b yzzhang@mail.sic.ac.cn,c yzhcao@mail.sic.ac.cn, d yanlu@mail.sic.ac.cn, e wangx609@student.sic.ac.cn
Keywords: VO2 film, Thickness, Thermochromic properties, Variable temperature transmission electron microscopy (TEM)
Abstract.VO2 films were deposited on quartz glass by rf reactive magnetron sputtering with plasma emission monitoring (PEM).
Yoshimura:Applied Surface Science Vol244(2005), p. 449- 452 [9] N.
Granqvist: Journal of Applied Physics Vol. (6) (2010), p.063525
[11] Hiroshi Kakiuchida, Ping Jin, Masato Tazawa:Solar Energy Materials & Solar Cells Vol.92 (2008), p.1279–1284 [12] F.
Haglund: JOURNAL OF APPLIED PHYSICS Vol. 96 (2) (2004), p.1209 [18] Christopher S.
Yoshimura:Applied Surface Science Vol244(2005), p. 449- 452 [9] N.
Granqvist: Journal of Applied Physics Vol. (6) (2010), p.063525
[11] Hiroshi Kakiuchida, Ping Jin, Masato Tazawa:Solar Energy Materials & Solar Cells Vol.92 (2008), p.1279–1284 [12] F.
Haglund: JOURNAL OF APPLIED PHYSICS Vol. 96 (2) (2004), p.1209 [18] Christopher S.