Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: December 2015
Authors: C. Chi, G. Etuk-Udo, W.O. Soboyejo, S.O. Dozie-Nwachukwu, Karen Malatesta, Nicolas Anuku, O.S. Odusanya, J.D. Obayemi
Soboyejo1,4,6
1Department of Materials Science and Engineering, African University of Science and Technology (AUST) Abuja-Nigeria
2Biotechnology and Genetic Engineering Advanced Laboratory, Sheda Science and Technology Complex (SHESTCO) P.M.B 186, Garki, Abuja, Nigeria
3Department of Materials Science and Engineering, Malete, Kwara State University, Nigeria.
4Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544, USA.
5Department of Chemistry, Bronx Community College, New York, NY, USA.
6Princeton Institute of Science and Technology of Materials (PRISM), Bowen Hall, 70 Prospect Street, Princeton, NJ 08544, USA.
They were then mounted in a CM100 Transmission Electron Microscope at the Princeton Institute of Science and Technology of Materials (PRISM) at Princeton University, New Jersey, USA.
The results show clear and predominant evidence of gold peaks, although peaks corresponding to some of the materials used in the reactions were also observed.
The waste materials associated with the biosynthesis of gold nanoparticles are relatively benign, compared to those associated with chemical synthesis.
Materials Letters 61, (2007) 3984–3987
They were then mounted in a CM100 Transmission Electron Microscope at the Princeton Institute of Science and Technology of Materials (PRISM) at Princeton University, New Jersey, USA.
The results show clear and predominant evidence of gold peaks, although peaks corresponding to some of the materials used in the reactions were also observed.
The waste materials associated with the biosynthesis of gold nanoparticles are relatively benign, compared to those associated with chemical synthesis.
Materials Letters 61, (2007) 3984–3987
Online since: July 2014
Authors: Che Murad Mardziah, N.R. Nik Roselina, Azizan Aziz, Zuraida Salleh, Koay Mei Hyie
Chemistry of Materials. 19, 3399-3405
Journal of Magnetism and Magnetic Materials. 293, 15-19
Journal of Materials Chemistry. 17, 372-376
Journal of Colloid and Interface Science. 283, 422-431
Journal of Chemical Sciences. 115, 613–619
Journal of Magnetism and Magnetic Materials. 293, 15-19
Journal of Materials Chemistry. 17, 372-376
Journal of Colloid and Interface Science. 283, 422-431
Journal of Chemical Sciences. 115, 613–619
Online since: January 2022
Authors: Melek Ayadi, César Ségovia, Nicolas Brosse, Slah Msahli, Riadh Zouari, Ayda Baffoun
Materials and Methods
2.1.
Textile Research Journal, 77, 2007, 617-626
Revalorisation of Posidonia Oceanica as Reinforcement in Polyethylene/Maleic Anhydride Grafted Polyethylene Composites, Journal of Renewable Materials, 2, 2014, 66-76
Materials, 23, 2017, 11-35
Journal of Applied Polymer Science, 88, 2003, 1494-1505
Textile Research Journal, 77, 2007, 617-626
Revalorisation of Posidonia Oceanica as Reinforcement in Polyethylene/Maleic Anhydride Grafted Polyethylene Composites, Journal of Renewable Materials, 2, 2014, 66-76
Materials, 23, 2017, 11-35
Journal of Applied Polymer Science, 88, 2003, 1494-1505
Online since: January 2010
Authors: Cosme Roberto Moreira Silva, Maria do Carmo de Andrade Nono, Ana Coh O. Hirschmann
This method leads to porous materials
displaying a negative replica of the original sacrificial template.
In direct foaming methods, porous materials are produced by incorporating air into a suspension or liquid media.
Preparation of porous materials with controlled pore size and porosity.
Nanko: Porous materials process technology and applications.
Askeland: The science and engineering of materials, 3 a edition, PWS publishing company - Boston 1994, part IV.
In direct foaming methods, porous materials are produced by incorporating air into a suspension or liquid media.
Preparation of porous materials with controlled pore size and porosity.
Nanko: Porous materials process technology and applications.
Askeland: The science and engineering of materials, 3 a edition, PWS publishing company - Boston 1994, part IV.
Online since: July 2023
Authors: Ganta Suresh, T. Vinod Kumar, Eriki Ananda Kumar
To find the corrosion progress the weight loss and corrosion rate is found in the sample material to apply vortex tube.
Material and Methodology The samples have been coated with different type of chemicals.
Journal of Thermofluids, 13 (22) 100133
International Research Journal of Modernization in Engineering Technology and Science, 4(5), 4611-4614
Journal of Procedia Engineering. 28 (4). p. 369-378
Material and Methodology The samples have been coated with different type of chemicals.
Journal of Thermofluids, 13 (22) 100133
International Research Journal of Modernization in Engineering Technology and Science, 4(5), 4611-4614
Journal of Procedia Engineering. 28 (4). p. 369-378
Online since: August 2011
Authors: Nian Li Lu, Shi Ming Liu
In order to make better use of the materials, the cross- sections of beams are designed to have different sizes along the axial direction in forms of stepped columns.
Acknowledgements This work was financially supported by the National Science and Technology Support Program (2008BAJ09B01-3).
[2] Li Q S: Journal of Constructional Steel Research.
[3] Naguleswaran S: International Journal of Mechanical Science.
[11] Xiaodong Li, Xiuli Wang: Journal of Huazhong University of Science and Technology.
Acknowledgements This work was financially supported by the National Science and Technology Support Program (2008BAJ09B01-3).
[2] Li Q S: Journal of Constructional Steel Research.
[3] Naguleswaran S: International Journal of Mechanical Science.
[11] Xiaodong Li, Xiuli Wang: Journal of Huazhong University of Science and Technology.
Online since: April 2012
Authors: Jörg Kärger
Guest diffusion in nanoporous materials reveals a wide spectrum of phenomena associated with random mass transfer in condensed matter quite in general.
Kärger, Diffusion in Condensed Matter: Methods, Materials, Models, Springer, Berlin, Heidelberg (2005)
Kärger, AIche Journal 28, 417 (1982)
Theodorou, Diffusion in Nanoporous Materials, Wiley - VCH, Weinheim (2012)
(online journal: www.diffusion-fundamentals.org) 14,1 pp 1-22 (2010)
Kärger, Diffusion in Condensed Matter: Methods, Materials, Models, Springer, Berlin, Heidelberg (2005)
Kärger, AIche Journal 28, 417 (1982)
Theodorou, Diffusion in Nanoporous Materials, Wiley - VCH, Weinheim (2012)
(online journal: www.diffusion-fundamentals.org) 14,1 pp 1-22 (2010)
Online since: August 2014
Authors: Keisuke Tanaka, Yoshiaki Akiniwa, Yuuki Koike
Experimental Procedure
Materials and Specimens.
Reifsnider (Ed.), Application of Fracture Mechanics to Composite Materials, L., Elesevier Science Pub., Amsterdam, (1989) 189-247
Friedlich, Microstructural details and the effect of testing conditions on the fracture toughness on injection-molded poly(phenylene-sulphide) composites, Journal of Materials Science, Vol. 22 (1987) 947-961
Akiniwa, X-ray residual stress measurement of short-fiber reinforced plastics, Proceeding of the 47th Symposium of X-Ray Studies of Mechanical Behavior of Materials, The Society of Materials Science, Japan, (2013) 119-124
Chee, Effects of thermal history on crystal structure of poly(phenylene sulphide), Journal of Materials Science, Vol. 27 (1992) 5609-5619
Reifsnider (Ed.), Application of Fracture Mechanics to Composite Materials, L., Elesevier Science Pub., Amsterdam, (1989) 189-247
Friedlich, Microstructural details and the effect of testing conditions on the fracture toughness on injection-molded poly(phenylene-sulphide) composites, Journal of Materials Science, Vol. 22 (1987) 947-961
Akiniwa, X-ray residual stress measurement of short-fiber reinforced plastics, Proceeding of the 47th Symposium of X-Ray Studies of Mechanical Behavior of Materials, The Society of Materials Science, Japan, (2013) 119-124
Chee, Effects of thermal history on crystal structure of poly(phenylene sulphide), Journal of Materials Science, Vol. 27 (1992) 5609-5619
Online since: May 2011
Authors: Long Bang Qing, Yu Hu, Jun Feng Guan, Shun Bo Zhao, Qing Bin Li, Li Hong Zhang, Dan Ni Luo
(In Chinese)
[3] G.Ma, X.Chang: Journal of China Three Gorges University (Natural Sciences),No.4,Vol.31(2009), p.31-36.
Liao: Key Engineering Materials, Vol.261-263(2004), p.57-62
Lin: Journal of Hohai University,No.1,Vol.23(1995), p.22-28.
Yu: Science in China Series E: Technological Sciences, No.12, Vol. 52(2009), P.3654-3660
[10] T.Bao,Y.Zhou: Journal of Hohai University(Natural Sciences),No.5,Vol.36(2008), p.683-688.
Liao: Key Engineering Materials, Vol.261-263(2004), p.57-62
Lin: Journal of Hohai University,No.1,Vol.23(1995), p.22-28.
Yu: Science in China Series E: Technological Sciences, No.12, Vol. 52(2009), P.3654-3660
[10] T.Bao,Y.Zhou: Journal of Hohai University(Natural Sciences),No.5,Vol.36(2008), p.683-688.
Online since: October 2013
Authors: Jing Hui Liu, Peng Fei Li
Yehia, Fracture resistance characterization of chemically modified crumb rubber asphalt pavement, Journal of Materials Science, 37 (2002) 557-566
Wang, Prediction of fatigue life of asphalt mixture in crack growth stage, Journal of South China University of Technology (Nature Science Edition), 2 (2008) 41-47
Pan, Deformation measurement method for rock materials based on natural speckle pattern, Chinese Journal of Rock Mechanics and Engineering, 6 (2002) 792-796
Xu, et al, Study on the tension test of membrane materials using digital image correlation method, Engineering Mechanics, 2 (2007) 34-38
Kong, Application of similar material simulating experiment based on DICM, Journal of Experimental Mechanics, 6 (2007) 605-611
Wang, Prediction of fatigue life of asphalt mixture in crack growth stage, Journal of South China University of Technology (Nature Science Edition), 2 (2008) 41-47
Pan, Deformation measurement method for rock materials based on natural speckle pattern, Chinese Journal of Rock Mechanics and Engineering, 6 (2002) 792-796
Xu, et al, Study on the tension test of membrane materials using digital image correlation method, Engineering Mechanics, 2 (2007) 34-38
Kong, Application of similar material simulating experiment based on DICM, Journal of Experimental Mechanics, 6 (2007) 605-611