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Online since: October 2013
Authors: Jie Chen, Zhen Kun Lin, Jun Hui Wu, Hui Ping Si, Kai Yan Lin, Xue Jun Yang
Carbonized materials were formally used as soil amendment material in Japan, and it was a common practice to apply the PA together with biochar.
Soil Science Society of America Journal, 2002, 66(4): 1249-1255
Chinese Journal of Soil Science, 2003,34(4): 349-355(In Chinese)
Soil Science Society of America Journal, 2006, 70(2): 448-453
Soil Science Society of America Journal, 2011, 75(3): 871-879
Soil Science Society of America Journal, 2002, 66(4): 1249-1255
Chinese Journal of Soil Science, 2003,34(4): 349-355(In Chinese)
Soil Science Society of America Journal, 2006, 70(2): 448-453
Soil Science Society of America Journal, 2011, 75(3): 871-879
Online since: August 2013
Authors: Jian Fu, Ren Bo Tan, Li Yuan Chen
Nano CT with synchrotron radiation has a high spatial resolution up to nano scale which provides an approach to the 3D inter-structure of sample of tiny size in the research of biology, materials and so on.
All the outstanding aspect of this technique shows its great potential in the study of life science, biological science, materials science and environment science [1-3].
So this proposed method has great potential applications in nano CT for life science, material science and many other research fields.
Journal of Microscopy, 2011, Vol201, pp. 395–403 [2] Chen Jie, Liu Longhua, Liu Gang, Tian Yangchao.
Chinese Journal of Aeronautics, 2003, Vol16(1) , pp. 59-64 [7] Fu Jian, Lu Hongnian.
All the outstanding aspect of this technique shows its great potential in the study of life science, biological science, materials science and environment science [1-3].
So this proposed method has great potential applications in nano CT for life science, material science and many other research fields.
Journal of Microscopy, 2011, Vol201, pp. 395–403 [2] Chen Jie, Liu Longhua, Liu Gang, Tian Yangchao.
Chinese Journal of Aeronautics, 2003, Vol16(1) , pp. 59-64 [7] Fu Jian, Lu Hongnian.
Online since: October 2011
Authors: Zhen Lu Shen, Mei Chao Li, Jing Na Zhu, Wei Min Mo
Preparation and Characterization of Platinum/Polyaniline
Core-shell Composite
Jingna Zhu, Zhenlu Shen*, Weimin Mo and Meichao Li
Research Center of Analysis and Measurement, College of Chemical Engineering and Materials Science, Zhejiang University of Technology, Hangzhou 310032, Zhejiang, China
email: zhenlushen@zjut.edu.cn
Keywords: core-shell composite; platinum; polyaniline; chemical synthesis
Abstract.
Ye: Journal of Physical Chemistry C Vol. 111 (2007), P. 8463 [6] M.
Taejin: Materials Science Forum (2010), P. 2771 [11] J.
Lee: Journal of Polymer Science Part a-Polymer Chemistry Vol. 45 (2007), P. 5741 [20] A.
Wang: Journal of Polymer Science Part a-Polymer Chemistry Vol. 48 (2010), P. 3903
Ye: Journal of Physical Chemistry C Vol. 111 (2007), P. 8463 [6] M.
Taejin: Materials Science Forum (2010), P. 2771 [11] J.
Lee: Journal of Polymer Science Part a-Polymer Chemistry Vol. 45 (2007), P. 5741 [20] A.
Wang: Journal of Polymer Science Part a-Polymer Chemistry Vol. 48 (2010), P. 3903
Online since: June 2014
Authors: Tong Tong Zhang, Jie Lv, Jia Shang Jiang, Wen Ming Han
Only consider the material linear movement.
International Journal of Production Research, 2009, 47(24): 6855-6873
Journal of Production Economics. 2008, 112(1):427-438
International Journal of Production Research, 2003, 41(5): 995-1016
Journal of Intelligent Manufacturing, 2010, 21(4): 471-485
International Journal of Production Research, 2009, 47(24): 6855-6873
Journal of Production Economics. 2008, 112(1):427-438
International Journal of Production Research, 2003, 41(5): 995-1016
Journal of Intelligent Manufacturing, 2010, 21(4): 471-485
Online since: February 2019
Authors: Aleksandr O. Taube, Victor Georgievich Shmorgun, Artem I. Bogdanov
Gurevich (Ed.), IzvestiaVSTU, Series «Problems of materials science, welding and strength in mechanical engineering. 10 (205) (2017) 13-17
Series: Materials Science and Engineering. 116 (2016) 012018
Series: Materials Science and Engineering. 177 (2017) 012134
Taube, Effect of the High-Heating on the Chemical and Phase Composition of the Al-Ni-Cr Layered Coatings, Materials Science Forum. 870 (2016) 169-174
Megueni, Thermo elastic stability analysis of functionally graded plates: an analytical approach, Computational Materials Science 49 (2010) 865-870
Series: Materials Science and Engineering. 116 (2016) 012018
Series: Materials Science and Engineering. 177 (2017) 012134
Taube, Effect of the High-Heating on the Chemical and Phase Composition of the Al-Ni-Cr Layered Coatings, Materials Science Forum. 870 (2016) 169-174
Megueni, Thermo elastic stability analysis of functionally graded plates: an analytical approach, Computational Materials Science 49 (2010) 865-870
Online since: March 2017
Authors: Bang Jiao Ye, Jian Dang Liu, Wen Na Ge, Ju Ping Xu, Run Ye
However, in most of the TE materials, the conversion efficiency is still too weak to be used for application.
Toberer, Complex thermoelectric materials, Nature materials 7 (2008) 105-114
K., Filled skutterudite antimonides: a new class of thermoelectric materials, Science 272 (1996) 1325-1328
[6] Christensen, Mogens, et al, Avoided crossing of rattler modes in thermoelectric materials, Nature materials 7 (2008) 811-815
[8] Liu H, Shi X, Xu F, et al, Copper ion liquid-like thermoelectric, Nature materials 11 (2012) 422-425
Toberer, Complex thermoelectric materials, Nature materials 7 (2008) 105-114
K., Filled skutterudite antimonides: a new class of thermoelectric materials, Science 272 (1996) 1325-1328
[6] Christensen, Mogens, et al, Avoided crossing of rattler modes in thermoelectric materials, Nature materials 7 (2008) 811-815
[8] Liu H, Shi X, Xu F, et al, Copper ion liquid-like thermoelectric, Nature materials 11 (2012) 422-425
Online since: December 2013
Authors: Peng Jun Cao, Bi Jia, Deng Ming Chen, Yong Jiang Di
Journal of Functional Materials and Devices, 2010, 16(1): 22-28
Progress in Materials Science, 2013, 58(2): 183-259
Journal of Magnetism and Magnetic Materials, 2005, 290: 1597-1600
Journal of Magnetism and Magnetic Materials, 2002, 242: 247-250
Journal of Magnetism and Magnetic Materials, 2006, 298(1): 56-64
Progress in Materials Science, 2013, 58(2): 183-259
Journal of Magnetism and Magnetic Materials, 2005, 290: 1597-1600
Journal of Magnetism and Magnetic Materials, 2002, 242: 247-250
Journal of Magnetism and Magnetic Materials, 2006, 298(1): 56-64
Online since: October 2018
Authors: R.T. Galiakhmetov, Vasiliy S. Rudnov, Vladimir A. Belyakov
Modern radiation-protective materials must have high strength and environmental characteristics of the performances and have a low cost.
Akhtyamova, Application of Dunite Aggregates to Increase Radiation-Protective Properties of Heavy Concretes, Journal of Science and business: ways of development, (2016) 46-49
Grishina, Methods and algorithm for the synthesis of radiation-protective materials of a new generation, Penza: PGUAS, 2009
Osipov, Designing of new compositions of radiation-protective concretes on the basis of barite aggregate and plasticizing chemical additives (article) Collection of articles II of the International interactive scientific and practical conference "Innovations in materials science and metallurgy ".
The state of modern building science-2012.
Akhtyamova, Application of Dunite Aggregates to Increase Radiation-Protective Properties of Heavy Concretes, Journal of Science and business: ways of development, (2016) 46-49
Grishina, Methods and algorithm for the synthesis of radiation-protective materials of a new generation, Penza: PGUAS, 2009
Osipov, Designing of new compositions of radiation-protective concretes on the basis of barite aggregate and plasticizing chemical additives (article) Collection of articles II of the International interactive scientific and practical conference "Innovations in materials science and metallurgy ".
The state of modern building science-2012.
Online since: December 2014
- hydrogen degradation of materials
From 2006: professor in the field of material science, chief of department of hydrogen resistance of materials at the Karpenko Physico-Mechanical Institute, National Academy of Sciences of Ukraine.
Educational activities: courses at the surface engineering, material science, chemical heat treatment, bases of fracture mechanics, cold working treatment, ageing of materials for nuclear, hydrogen and forcible energetic, medical material science and biocompatible electronics
2002-2007: Professor at the Technical University of Szczecin, Institute of Materials Engineering
Reviewer of various associations and international publications in on-line, open access journal in the fields of fracture and solid mechanics and in structural and material engineering, as the International Journal of Fracture, Engineering Fracture Mechanics, Materials Science, Welding Technology Review, Maintenance Problems, Mechanical Fatigue of Metals, Tribology International, Materials Chemistry and Physics, Advances in Mechanical Engineering.
From 2006: professor in the field of material science, chief of department of hydrogen resistance of materials at the Karpenko Physico-Mechanical Institute, National Academy of Sciences of Ukraine.
Educational activities: courses at the surface engineering, material science, chemical heat treatment, bases of fracture mechanics, cold working treatment, ageing of materials for nuclear, hydrogen and forcible energetic, medical material science and biocompatible electronics
2002-2007: Professor at the Technical University of Szczecin, Institute of Materials Engineering
Reviewer of various associations and international publications in on-line, open access journal in the fields of fracture and solid mechanics and in structural and material engineering, as the International Journal of Fracture, Engineering Fracture Mechanics, Materials Science, Welding Technology Review, Maintenance Problems, Mechanical Fatigue of Metals, Tribology International, Materials Chemistry and Physics, Advances in Mechanical Engineering.
Online since: November 2017
Authors: Hadi Samadian, Hamid Mobasheri, Saeed Hasanpour, Reza Faridi-Majid
Journal of materials science, 2011. 46(19): p. 6453-6456
Journal of Materials Science, 2013. 48(14): p. 4843-4850
Journal of Materials Science: Materials in Electronics, 2013. 24(10): p. 3976-3984
Materials Science and Engineering: C, 2015. 48: p. 673-678
Journal of Applied Polymer Science, 2004. 91(1): p. 242-246
Journal of Materials Science, 2013. 48(14): p. 4843-4850
Journal of Materials Science: Materials in Electronics, 2013. 24(10): p. 3976-3984
Materials Science and Engineering: C, 2015. 48: p. 673-678
Journal of Applied Polymer Science, 2004. 91(1): p. 242-246