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Online since: January 2012
Authors: Quang Cherng Hsu, Yen Yu Cheng, Bao Hsin Liu
MD has been widely used to simulate the material behaviors in a variety of materials in nano scale movement.
It was found that the ultimate tensile strain for BCC materials is smaller than FCC materials and the ultimate tensile stress for rapid stretching is larger than slow stretching.
Also, Morse potential was concluded less suitable for analyzing the materials with BCC.
References [1] R.Komanduri and N.Chandrasekaran: Journal of Mechanical Sciences, Vol.43 (2000), p. 2237
[2] H.N.G.Wadley and X.Zhou: Progress in Materials Sciences, Vol.46 (2001), p. 329
Online since: January 2009
Authors: Zheng Li Xu, Jie Wei, Chang Sheng Liu, Jiao Sun
Effect of Hydroxyapatite Nanoparticles of Different Concentrations on Rat Osteoblast Zhengli XU 1, Jiao SUN 1*, Changsheng Liu2, Jie Wei2 1 Ninth People's Hospital, School of Medicine, Shanghai Jiaotong University Shanghai Biomaterials Research & Testing Center Shanghai Key Laboratory of Stomatology 2Key Laboratory for Ultrafine Materials of Ministry of Education Engineering Research Center for Biomedical Materials of Ministry of Education East China University of Science and Technology *Corresponding author:Jiaosun59@yahoo.com Key words: Hydroxyapatite Nanoparticle; Osteoblasts; Inhibiton; Apoptosis; Abstract:Nano-HAP (10-20nm) were obtained from East China University of Science and Technology.
Materials and Experimental procedures 2.1 Materials.
International Journal of Nanomedicine 2008:3(2) 133-149; [3] Stuart C McBain, Humphrey HP Yiu, Jon Dobson.
International Journal of Nanomedicine 2008:3(2) 169-180; [4] Liuyun J, Yubao L, Li Z.
Key Engineering Materials 2007: Vol 330-332: 287-290; [9] Yuan Yuan, Liu Chang-sheng.
Online since: October 2011
Authors: Cheng Jun Liu, Jie Qi, Mao Fa Jiang
Experimental Study on Sulfuric Acid Leaching Behavior of Chromite with Different Temperature Chengjun Liua, Jie Qib and Maofa Jiangc School of Materials and Metallurgy, Northeastern University, Shenyang 110819, Liaoning, China aliucj@smm.neu.edu.cn, bqjjj5633@126.com, cjiangmf@smm.neu.edu.cn Keywords: Chromite, Sulfuric acid, Leaching, Reaction temperature.
Experimental Method Experimental materials.
Pan: Journal of Hazardous Materials, Vol. 149 (2007), P. 440-447 [4] Y.
Jiang: Journal of Ecotechnology Research, Vol.12(2006), P. 177-180
Liu: Journal of the Chinese rare earth society, Vol. 20(2002), P. 472-474 (In Chinese) [8] P.Y.
Online since: January 2011
Authors: Hui Ji Shi, Hui Chen Yu, Bin Zhong, Hong Xia Deng, Seiji Tsuruoka
Wu: Metallurgical and Materials Transactions a-Physical Metallurgy and Materials Science 27 (1996), p. 3639 [3] A.
Daniell: Journal of Biomedical Materials Research 13 (1979), p. 265 [14] W.
Bhadeshia: Metallurgical Transactions a-Physical Metallurgy and Materials Science 20 (1989), p. 1037 [16] L.
Lugscheider: Materials Science and Technology 8 (1992), p. 657 [19] R.
Waterhouse: Journal of Materials Science 18 (1983), p. 3265 [20] M.
Online since: September 2012
Authors: Michael Schneider, Achim Bittner, Tobias Strunz, Ulrich Schmid
The measurements are in excellent agreement with the empirical Curie van Schweidler law [7, 11, 12] I(t) = I0 + I1·t-n, (2) a well known relation for modeling discharging behavior in dielectric materials with the stationary leakage current I0, the Curie factor I1, the time t and the Curie exponent n.
Morkoc, GaN, AlN, and InN: A review, Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures 10 (1992) 1237-1266
Elmazria et al., Synthesis and microstructural characterisation of reactive RF magnetron sputtering AlN films for surface acoustic wave filters, Diamond and Related Materials 13 (2004) 1111-1115
Hernando et al., The influence of sputter deposition parameters on piezoelectric and mechanical properties of AlN thin films, Materials Science and Engineering: B 172 (2010) 253-258
Waser, Curie - Von Schweidler behaviour observed in ferroelectric thin films and comparison to superparaelectric thin film materials, Integrated Ferroelectrics 22 (1998) 109-121.
Online since: September 2013
Authors: Xue Fei Zhang, Tian Guo Zhou, Ren Guo Guan, Tong Cui
China) (2 School of Materials& Metallurgy, Northeastern University, Shenyang 110004.
Introduction In the past few decades the bio-medical metal materials are in a continuous development or innovation with many new materials successfully developed.
The mechanical properties of the materials are tested with CMT5105 computer controlled universal material test machine.
Project of platform science and technology for advanced magnesium alloys[J], Materials Transactions, 2000, 42(7):1154-1159
Semisolid metal processing[J], International Materials Reviews, 2002, 47(2): 49-85.
Online since: February 2019
Authors: Himadri Shekhar Mondal, Md. Mehadi Hasan Mahasin, Md. Mahbub Hossain, Pankoj Kumar Mondal, Md. Ekhlasur Rahaman
Typical biochemical examines were created for this where some types depend on nano-structured materials.
Reproduced with permission of Journal of Materials Research, Cambridge University Press [43]. 3.2.6 Optical Bio-sensors utilizing Graphene and Functional DNA Molecules Single-stranded DNA atoms fit for sub-atomic acknowledgment and catalysis would now be able to be routinely created by means of the procedure of in vitro selection.
Coupling serviceable DNA particles with graphene materials for the plan of optical bio-sensors has turned into an energizing examination territory lately, as graphene materials are great quenchers of fluorescence as well as show extensively extraordinary attraction for free and ligand-bound functional DNA atoms.
Iborra, et al., "Advances in piezoelectric thin films for acoustic biosensors, acoustofluidics and lab-on-chip applications," Progress in Materials Science, vol. 89, pp. 31-91, 2017
Li, "Optical biosensors utilizing graphene and functional dna molecules," Journal of Materials Research, pp. 1-11, 2017
Online since: April 2008
Authors: Leszek Adam Dobrzański, Wojciech Sitek, Jacek Trzaska
Sitek: Journal of Materials Processing Technology, v.64, 1-3, 1997
Sitek: Journal of Materials Processing Technology, v.78, 1-3, 1998
Sitek: Journal of Materials Processing Technology, v.92-93, 1999
Trzaska: Journal of Materials Processing Technology, v.157-158, 2004
Trzaska: Computational Materials Science, v. 30, issues 3-4, 2004
Online since: October 2014
Authors: Corrado Sciancalepore, Tiziano Manfredini, Federica Bondioli
The development of advanced materials is increasingly leading to integration of functions into materials and components.
Titanium dioxide (TiO2) is one of the most used and efficient photocatalytic material and, especially in the field of construction and building materials, it is the most widely used.
Szczawińska, Survival of Staphylococcus aureus exposed to UV radiation on the surface of ceramic tiles coated with TiO2, Polish Journal of Veterinary Sciences Vol. 14, No. 1 (2011), 41-46 [30] M.
Page, et al., "Titania and silver-titania composite films on glass-potent antimicrobial coatings," Journal of Materials Chemistry, 17[1] 95-104 (2007)
Sun, et al., "Preparation and antibacterial activity of Ag-TiO2 composite film by liquid phase deposition (LPD) method," Bulletin of Materials Science, 31[1] 61-66 (2008)
Online since: May 2012
Authors: Bao Cai Wu, Chun Ming Liu
With the deterioration of atmosphere pollution, the polluted atmosphere makes a great impact to steel materials.
Anti-corrosion Methods and Materials, Vol. 47(2000), p. 30
Corrosion Science.
Corrosion Science.
Corrosion Science.