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Online since: January 2016
Authors: Boonchoat Paosawatyanyong, Nattatip Patanoo, Sukrit Kongnithichalerm, Worawan Bhathumnavin, Mati Horprathum, Phongsaphak Sittimart, Nathaporn Promros
Physical Properties of Copper Films Deposited by Compact-Size Magnetron Sputtering Source with Changing Magnetic Field Strength
Nathaporn Promros1,a, Phongsaphak Sittimart1,b, Nattatip Patanoo1,c,
Sukrit Kongnithichalerm1,d, Mati Horprathum2,e, Worawan Bhathumnavin3,f, and Boonchoat Paosawatyanyong4,g
1Department of Physics, Faculty of Science, King Mongkut’s Institute of Technology Ladkrabang, Bangkok 10520, Thailand
2Optical Thin-Film Technology Research Laboratory and Intelligent Devices and Systems Research Unit, International Electronics and Computer Technology Center (NECTEC), Pathumthani, 12120, Thailand
3Department of Chemistry, Chulalongkorn University, Bangkok, 10330, Thailand
4Department of Physics, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand
anathaporn_promros@kyudai.jp, bpsittimart@gmail.com, cnattatip516@gmail.com, dkurobakaito@hotmail.com, emati.horprathum@nectec.or.th, fworawan.b@chula.ac.th, gpaosawat@sc.chula.ac.th
Keywords: Magnetron
Paosawatyanyong, Silver thin film deposited by compact magnetron sputtering system, Advanced Materials Research 93-94 (2010) 413-416
Teo, Atomic force microscopy (AFM) and X-ray diffraction (XRD) investigations of copper thin films prepared by dc magnetron sputtering technique, Microelectronics Journal 37 (2006) 1064-1071.
Paosawatyanyong, Silver thin film deposited by compact magnetron sputtering system, Advanced Materials Research 93-94 (2010) 413-416
Teo, Atomic force microscopy (AFM) and X-ray diffraction (XRD) investigations of copper thin films prepared by dc magnetron sputtering technique, Microelectronics Journal 37 (2006) 1064-1071.
Online since: April 2007
Authors: Tian Min Wang, Jun Ying Zhang, Yi Du, Wei Chang Hao
Large-Scale Fabrication of ZnO Hexagonal Rods Arrays by A Simple
Chemical Solution Method
Du Yi, Hao Weichang *
, Zhang Junying and Wang Tianmin
Center of Materials Physics and Chemistry, School of Science, Beihang University, Beijing 100083,
China
Keywords: ZnO, Hexagonal rods, Array, Morphology
Abstract.
Acknowledgement This work was financially supported by The National Natural Science Foundation of China (No.50302001) and The Postdoctoral Research Foundation of China (No. 20040350264).
Kim, et al.: Journal of Crystal Growth Vol. 249 (2003), pp.201
Acknowledgement This work was financially supported by The National Natural Science Foundation of China (No.50302001) and The Postdoctoral Research Foundation of China (No. 20040350264).
Kim, et al.: Journal of Crystal Growth Vol. 249 (2003), pp.201
Online since: May 2012
Authors: Jie Ding, Yuan Yuan Qu, Wan Qian Guo, Nan Qi Ren
Materials and methods
Feedstock and mixed culture bacteria.
Acknowledgements This research was supported by the National Natural Science Foundation of China (Grant Nos. 51178140 and 51121062).
Yang: Chinese Journal of Chemical Engineering.
Wang: Progress in Natural Science.
Acknowledgements This research was supported by the National Natural Science Foundation of China (Grant Nos. 51178140 and 51121062).
Yang: Chinese Journal of Chemical Engineering.
Wang: Progress in Natural Science.
Online since: March 2006
Authors: Yu Wen Qin, Jin Long Chen, Cuiru Sun, Xin Hua Ji
Acknowledgement
The authors are grateful to the financial supports provided by the scientific research foundation for
the returned overseas Chinese scholars, State Education Ministry and the national natural science
foundation of China (No: 10472080).
References [ 1] Petras A., Sutcliffe M., Failure mode maps for honeycomb sandwich panels, Composite Structures, 1999, 44, 237-252 [ 2] Hwang S.F., Liu G.H., Buckling behavior of composite laminates with muitiple delamination under uniaxial compression, Composite Structures, 2001, 53, 235-243 [ 3] Hung Y.Y., Applications of digital shearography for testing of composite structures, Composites Part B: Engineering, 1997, 30(3-4), 765-773 [ 4] Chen J.L., Qin Y.W., Ji H.W., and Ji X.H., Novel quantitative non-destructive testing method for composite structures, Optics and Lasers in Engineering, 1998, 30(3-4), 299-304 [ 5] Chen J.L., Sun C.G., Qin Y.W., Ji X.H., Digital shearing speckle for nondestructive testing of composite materials, Journal of Astronautics,2004, 25(3), 323-326 [ 6] Qian K.M., Miao H., Wu X.P., A real-time polarization phase shifting technique for dynamic measurement, ACTA OPTICA SINICA, 2001, 21 (1), 64-67 [ 7] Chen J.L., Qin Y.W., and Ji
X.H., Phase-shifting shearing speckle for quantitative NDT of bimaterials interface, ACTA Materiae Compositae SINICA, 2001, 18 (1), 128-130 [ 8] Soden R.A.J., Dewhurst R.J., An integrated liquid crystal phase modulator for speckle shearing interferometry, Optics and Laser in Eng., 1999, 31 (2-3), 123-134 [ 9] Jiang Lijun, Liu Wei, Tan Yushan, A study on PALC phase-shifting shearing ESSPI, Acta Optic Sinica, 1996, 16(10), 244-247 [10] Chen J.L., Hung Y.Y., Study on the phase-shifting large shearing speckle pattern interferometry based on the liquid crystal, Acta Optic Sinica,2004, 24(9), 1292-1296 [11] Udupa G., Ngoi B., Goh H.C. and Yusoff M.N., Defect detection in unpolished Si wafers by digital shearography, Measurement Science and Technology, 2004, 15(1), 35-43
References [ 1] Petras A., Sutcliffe M., Failure mode maps for honeycomb sandwich panels, Composite Structures, 1999, 44, 237-252 [ 2] Hwang S.F., Liu G.H., Buckling behavior of composite laminates with muitiple delamination under uniaxial compression, Composite Structures, 2001, 53, 235-243 [ 3] Hung Y.Y., Applications of digital shearography for testing of composite structures, Composites Part B: Engineering, 1997, 30(3-4), 765-773 [ 4] Chen J.L., Qin Y.W., Ji H.W., and Ji X.H., Novel quantitative non-destructive testing method for composite structures, Optics and Lasers in Engineering, 1998, 30(3-4), 299-304 [ 5] Chen J.L., Sun C.G., Qin Y.W., Ji X.H., Digital shearing speckle for nondestructive testing of composite materials, Journal of Astronautics,2004, 25(3), 323-326 [ 6] Qian K.M., Miao H., Wu X.P., A real-time polarization phase shifting technique for dynamic measurement, ACTA OPTICA SINICA, 2001, 21 (1), 64-67 [ 7] Chen J.L., Qin Y.W., and Ji
X.H., Phase-shifting shearing speckle for quantitative NDT of bimaterials interface, ACTA Materiae Compositae SINICA, 2001, 18 (1), 128-130 [ 8] Soden R.A.J., Dewhurst R.J., An integrated liquid crystal phase modulator for speckle shearing interferometry, Optics and Laser in Eng., 1999, 31 (2-3), 123-134 [ 9] Jiang Lijun, Liu Wei, Tan Yushan, A study on PALC phase-shifting shearing ESSPI, Acta Optic Sinica, 1996, 16(10), 244-247 [10] Chen J.L., Hung Y.Y., Study on the phase-shifting large shearing speckle pattern interferometry based on the liquid crystal, Acta Optic Sinica,2004, 24(9), 1292-1296 [11] Udupa G., Ngoi B., Goh H.C. and Yusoff M.N., Defect detection in unpolished Si wafers by digital shearography, Measurement Science and Technology, 2004, 15(1), 35-43
Online since: May 2013
Authors: Yu Gui Zhang, Wen Yan Bi, Hou Xiang Chen, Hua Hu, Liang Liang Hou, Hong Yang
Introduction
Coal is one of the most important fuel resources which can be transformation into chemicals and carbon materials.
Acknowledgment This work was financially supported by the Nature Science Foundation of China(40772094), National High Technology Research and Development Program of China(863)(2007AA06Z221), Natural Science Research Project of Henan Province( 2010A530002), the Opening Project of Henan Key Laboratory of Coal Mine Methane and Fire Prevention(HKLGF200902)
* Author: YANG Hong, female, 1964,Guangxi province, associate professor, master degree, engaged in coal chemical research; Tel:13939111268 References [1] Yuanyu Tian, Shuguan Sheng, Yajun Tian, “Coal unfreezing extraction and coal chemical group composition,” Journal of Taiyuan University of Technology, vol. 32, no. 6, pp. 555-558, 2001
Acknowledgment This work was financially supported by the Nature Science Foundation of China(40772094), National High Technology Research and Development Program of China(863)(2007AA06Z221), Natural Science Research Project of Henan Province( 2010A530002), the Opening Project of Henan Key Laboratory of Coal Mine Methane and Fire Prevention(HKLGF200902)
* Author: YANG Hong, female, 1964,Guangxi province, associate professor, master degree, engaged in coal chemical research; Tel:13939111268 References [1] Yuanyu Tian, Shuguan Sheng, Yajun Tian, “Coal unfreezing extraction and coal chemical group composition,” Journal of Taiyuan University of Technology, vol. 32, no. 6, pp. 555-558, 2001
Online since: December 2013
Authors: Zhi Xin Wang, Jie Wu, Bin Kai Jiang, Qin Zhu, Li Shi, Bin Feng Lu
Acknowledgements
This work was supported by Program of National Natural Science Foundation of China (51377105), The National High Technology Research and Development of China 863 Program (2011AA05A103).
Advanced Materials Research, 2013, 608: 601-606
Mediterranean Journal of Measurement and Control,2012, 8(1): 359-367
Changsha University of Technology (Natural Science Edition), 2011, 8 (4): 77-80.
Advanced Materials Research, 2013, 608: 601-606
Mediterranean Journal of Measurement and Control,2012, 8(1): 359-367
Changsha University of Technology (Natural Science Edition), 2011, 8 (4): 77-80.
Online since: September 2013
Authors: Yu Long Pei, Lian Zhen Wang
Fatigue-related traffic accidents in Heilongjiang Province
Yulong Pei1, a, Lianzhen Wang1,b
1 School of Transportation Science and Engineering, Harbin Institute of Technology,
Huanghe Rd., NO.73, Harbin 150090, China
a278525449@qq.com, brock510@163.com
Keywords: Fatigue-related traffic accidents, Stepwise logistic regression, case-control, risk factors.
Materials and methods The traffic data used in this study were obtained from Hlj Provincial Department of Public Security Traffic Administrative Bureau Data System.
Acknowledgements This work was financially supported by Natural Science Foundation of China Program (Grant No.: 51178149).
Journal of Psychosomatic Research, 63(6), pp.573-577 (2007).
Materials and methods The traffic data used in this study were obtained from Hlj Provincial Department of Public Security Traffic Administrative Bureau Data System.
Acknowledgements This work was financially supported by Natural Science Foundation of China Program (Grant No.: 51178149).
Journal of Psychosomatic Research, 63(6), pp.573-577 (2007).
Online since: October 2011
Authors: Yan Li Lǚ, Ming Jun Shan, Tie Feng Li, Hong Zhi Hu, Yan Qiu Wang, Da Wei Pan
Study on Aerobic Biological Phase in the System of Coal Tar Processing Wastewater Treatment
Lǚ Yan-li1 , Wang Yan-qiu1 , Shan Ming-jun1 ,Pan Da-wei1 , Li Tie-feng1,
Hu Hong-zhi2
1 Department of Environmental Engineering
University of Science and Technology Liaoning
Anshan, China
2 Department of Marine Forecasting
Weihai Marine Environmental Monitoring Center
Weihai, China
e-mail: aslyanli@126.com
Keywords: Coal tar processing wastewatert;biological phase; SHARON-ANAMMOX; aerobic treatment
Abstract.
Materials and Methods Experimental water Experiments of SHARON-ANAMMOX biological processes were conducted to treat Coal Tar Processing wastewater, which was pretreated with physical and chemical treatment in Pioneer Chemical Co., Ltd.
Zhangn, “The integration of methanogenesis with denitrification and anaerobic ammonium oxidation in an expanded granular sludge bed reactor,” Journal of Environmental Science.
Materials and Methods Experimental water Experiments of SHARON-ANAMMOX biological processes were conducted to treat Coal Tar Processing wastewater, which was pretreated with physical and chemical treatment in Pioneer Chemical Co., Ltd.
Zhangn, “The integration of methanogenesis with denitrification and anaerobic ammonium oxidation in an expanded granular sludge bed reactor,” Journal of Environmental Science.
Online since: October 2011
Authors: Rui Li
Materials
Imidazole (IM), 2,2 - bipyridine (Bipy), pyridine (Py), AR grade, Shanghai Chemical Reagent Factory; ethylenediamine, Beijing Chemical Reagent Company; α-methyl pyridine, Shanghai Chemical Reagent Factory; methanol, Tianjin Chemical Reagent Co., Ltd.; CuCl, commercially available analytical grade.
Journal of Chemical Engineering, 1997, 11 (2): 212
Huazhong University of Science and Technology: Natural Science, 2002, 30 (7): 101-1031
Journal of Chemical Engineering, 1997, 11 (2): 212
Huazhong University of Science and Technology: Natural Science, 2002, 30 (7): 101-1031
Online since: June 2015
Authors: Sook Keng Chang, Zulkarnain Zainal, Chew Ping Chia, Yusran Sulaiman
Effect of Duty Cycle on Pulse Electrodeposited Tin Seleno Telluride Semiconductor Thin Film
Chew Ping Chia1,a, Zulkarnain Zainal1,2,b,* Yusran Sulaiman1,c
and Sook-Keng Chang1,2,d
1Department of Chemistry, Faculty of Science, Universiti Putra Malaysia, 43400 UPM, Serdang, Selangor, Malaysia
2Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology, Universiti Putra Malaysia, 43400 UPM, Serdang, Selangor, Malaysia
asymphonychia@gmail.com, bzulkar@upm.edu.my, cyusran@upm.edu.my, dskchang28@hotmail.com
*corresponding author: zulkar@upm.edu.my
Keywords: Tin seleno telluride, Pulse electrodeposition, Duty cycle, Thin film
Abstract
Tin seleno telluride thin film was deposited by pulse electrodeposition onto fluorine doped tin oxide coated glass from aqueous solution containing Sn-EDTA, Na2SeO3 and TeO2.
Recently, these materials have attracted vast investigations due to several benefits which includes low production cost as well as clean and environmental friendly energy conversion.
Hussein, Structure and Photoactivity of Electrodeposited Tin Selenide Films on Tin Substrate, Malaysian Journal of Analytical Sciences, 7 (2001) 197-202
Recently, these materials have attracted vast investigations due to several benefits which includes low production cost as well as clean and environmental friendly energy conversion.
Hussein, Structure and Photoactivity of Electrodeposited Tin Selenide Films on Tin Substrate, Malaysian Journal of Analytical Sciences, 7 (2001) 197-202