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Online since: September 2013
Authors: Ru Li, Ji Fei Deng, Fen Fen Liu
Experimental
Materials.
Acknowledgements This work is supported by Natural Science Foundation of China(Ratification NO.11105102), Postdoctor Foundation of China(Ratification NO.20090451378), Science and Technology Innovative Engineering Project of Shaanxi Province(Ratification NO.2011KTCL01-12), Xi’an Science and Technology Plan Projects(Ratification NO.CY1125) and Natural Science Research Project of Education Department of Shaanxi Province(Ratification NO.12JK0651).
European Polymer Journal. 2000, 36(8)1563-1569
Journal of Xi’an University of Engineering Sci and Tech. 2007, 21(3) 390-392
Journal of Membrane Science, 1996,111(2)193-215
Acknowledgements This work is supported by Natural Science Foundation of China(Ratification NO.11105102), Postdoctor Foundation of China(Ratification NO.20090451378), Science and Technology Innovative Engineering Project of Shaanxi Province(Ratification NO.2011KTCL01-12), Xi’an Science and Technology Plan Projects(Ratification NO.CY1125) and Natural Science Research Project of Education Department of Shaanxi Province(Ratification NO.12JK0651).
European Polymer Journal. 2000, 36(8)1563-1569
Journal of Xi’an University of Engineering Sci and Tech. 2007, 21(3) 390-392
Journal of Membrane Science, 1996,111(2)193-215
Online since: April 2014
Authors: Gang Han, Zhen Gang Wu, Ming Fei Zhao, Zhan Jun Liu
Introduction
As one of the most powerful and versatile controlled/“living” adical polymerization (CRP) techniques, reversible addition fragmentation transfer (RAFT) polymerization has achieved great success in the preparation of various well-controlled polymeric materials.
Acknowledgments The Project Supported by Hebei Provincial Natural Science Foundation of China — Shijiazhuang Pharmaceutical Group (CSPC) Foundation (H2013209192).
Blout, LIGHT-INDUCED POLYMERIZATION OF SOME MONOMERS CONTAINING ALLYL AND METHACRYLATE GROUPS, Journal of Polymer Science. 3 (1948) 264-282
An anionic initiator for the well-defined synthesis of poly(allyl methacrylate) on a solid support, Journal of Polymer Science Part A: Polymer Chemistry. 41 (2003) 853-860
Salamova, Effects of complex formation and cyclization in radical copolymerization of allyl(metha)acrylates with maleic anhydride, Journal of Polymer Science Part A: Polymer Chemistry. 36 (1998) 1501-1508.
Acknowledgments The Project Supported by Hebei Provincial Natural Science Foundation of China — Shijiazhuang Pharmaceutical Group (CSPC) Foundation (H2013209192).
Blout, LIGHT-INDUCED POLYMERIZATION OF SOME MONOMERS CONTAINING ALLYL AND METHACRYLATE GROUPS, Journal of Polymer Science. 3 (1948) 264-282
An anionic initiator for the well-defined synthesis of poly(allyl methacrylate) on a solid support, Journal of Polymer Science Part A: Polymer Chemistry. 41 (2003) 853-860
Salamova, Effects of complex formation and cyclization in radical copolymerization of allyl(metha)acrylates with maleic anhydride, Journal of Polymer Science Part A: Polymer Chemistry. 36 (1998) 1501-1508.
Online since: February 2011
Authors: Ai Jun Hu, Zhi Hua Zhang, Qiong Xi Chen, Rong Liu, Xue Liu, Yi Ming Wang, Cong Wu, Jie Zheng
Acknowledgments
We are grateful for the financial support from the National Natural Science Foundation of China (Project No.: 31071608), and the China Postdoctoral Science Foundation funded project (Grant No.: 20100470777).
Journal of Microencapsulation, 18(3), 373–383
Journal of Pharmaceutical Science, 73(11), 1507–1513. [4] Sturesson, C., & DeglingWikingsson, L. (2000).
Journal of Controlled Release, 68(3), 441–450
Advanced Materials Research Vols, 148-149, 1648-1651
Journal of Microencapsulation, 18(3), 373–383
Journal of Pharmaceutical Science, 73(11), 1507–1513. [4] Sturesson, C., & DeglingWikingsson, L. (2000).
Journal of Controlled Release, 68(3), 441–450
Advanced Materials Research Vols, 148-149, 1648-1651
Online since: January 2010
Authors: Rajendra Bordia, Heinrich Riesemeier, Rainer Grupp, Helmut Schubert, Rolf Zehbe, Annette Thiem, Victoria Lum
Synchrotron µCT Investigation of the Collapsing Pore-Network of
Gelatin Scaffolds under Compression
Annette Thiem
1, Victoria Lum
2, Rainer Grupp3, Heinrich Riesemeier4,
Rajendra Bordia2, Helmut Schubert1, Rolf Zehbe
1a)
1
Technische Universität Berlin, Institute of Materials Science and Technologies,
Englische Strasse 20, 10587 Berlin, Germany
2
University of Washington, Department of Materials Science and Engineering, Box 352120, WA
98195 Seattle, USA
3
Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Glienicker Straße 100,
14109 Berlin, Germany
4
BAM, Federal Institute for Materials Research & Testing, Division I.3,
Richard-Willstätter-Strasse 11, 12489 Berlin, Germany
a)
corresponding author: rolf.zehbe@tu-berlin.de
Keywords: Gelatin, Scaffold, Compression, Pore-Network, SR-µCT
Abstract.
Materials and Methods Scaffold Synthesis.
Brochhausen, Journal of the Royal Society: Interface, 2009, accepted [2] V.C.
Mow, Journal of Biomechanics., 33(12), 1663-1673 (2000) [4] W.M.
Schubert, Bio-Medical Materials and Engineering, 15, 445454 (2005) [8] R.
Materials and Methods Scaffold Synthesis.
Brochhausen, Journal of the Royal Society: Interface, 2009, accepted [2] V.C.
Mow, Journal of Biomechanics., 33(12), 1663-1673 (2000) [4] W.M.
Schubert, Bio-Medical Materials and Engineering, 15, 445454 (2005) [8] R.
Online since: July 2020
Authors: Darminto Darminto, Masatsune Kato, Takashi Noji, Resky Irfanita, Takayuki Kawamata, Malik Anjelh Baqiya, Putu Eka Dharma Putra, Hidetaka Sato, Fitriana Fitriana
Dried commercial powders of La2O3 (99.9%), SrCO3 (99.9%), and CuO (>98%) were prepared as raw materials, whereas HNO3 (65%) was used as the dissolving agent.
All the raw materials were dissolved in HNO3 solution separately and then mixed together using a hot-plate magnetic stirrer at 150 oC in ambient atmosphere.
Hussey, Proceedings of the National Academy of Sciences 107, 17131 (2010)
Krüger, Journal of Superconductivity 18, 433 (2005)
Li, The Journal of Physical Chemistry C 117, 3028 (2013)
All the raw materials were dissolved in HNO3 solution separately and then mixed together using a hot-plate magnetic stirrer at 150 oC in ambient atmosphere.
Hussey, Proceedings of the National Academy of Sciences 107, 17131 (2010)
Krüger, Journal of Superconductivity 18, 433 (2005)
Li, The Journal of Physical Chemistry C 117, 3028 (2013)
Online since: November 2018
Authors: Roland Platz, Shashidhar Mallapur
Materials and Product Technology, Vol. 25, 2006
[22] Schaeffner, M., Goetz, B., Platz, R., "Active buckling control of a beam-column with circular cross-section using piezoelastic supports and integral LQR control", Journal of Smart Materials and Structures, 2016
[24] Goetz, B., Schaeffner, M., Platz, R., Melz, T.: "Lateral vibration attenuation of a beam with circular cross-section by a support with integrated piezoelectric transducers shunted to negative capacitances", Journal of Smart Materials and Structures, 2016
[26] Schaeffner, M., Platz, R., "Gain-Scheduled H∞ Buckling control of a Circular Beam-Column Subject to Time-Varying Axial Loads", Smart Materials and Structures (IOP Publishing Ltd), 27(6), 065009, 2018
[27] Goetz, B. , Platz, R. and Melz, T. (2018), "Effect of static axial loads on the lateral vibration attenuation of a beam with piezo-elastic supports", Smart Materials and Structures (IOP Publishing Ltd), 27(3), 035011, 2018
[22] Schaeffner, M., Goetz, B., Platz, R., "Active buckling control of a beam-column with circular cross-section using piezoelastic supports and integral LQR control", Journal of Smart Materials and Structures, 2016
[24] Goetz, B., Schaeffner, M., Platz, R., Melz, T.: "Lateral vibration attenuation of a beam with circular cross-section by a support with integrated piezoelectric transducers shunted to negative capacitances", Journal of Smart Materials and Structures, 2016
[26] Schaeffner, M., Platz, R., "Gain-Scheduled H∞ Buckling control of a Circular Beam-Column Subject to Time-Varying Axial Loads", Smart Materials and Structures (IOP Publishing Ltd), 27(6), 065009, 2018
[27] Goetz, B. , Platz, R. and Melz, T. (2018), "Effect of static axial loads on the lateral vibration attenuation of a beam with piezo-elastic supports", Smart Materials and Structures (IOP Publishing Ltd), 27(3), 035011, 2018
Online since: February 2011
Authors: Yong Xu Zhao, Wen Jun Hu, Jun Mei, Niu Wei, Jian Jun Xie
Department of Civil Engineering and Architecture, Southwest University of Science and Technology, MianYang, SiChuan, 621010;
2.
Use different rubber materials and different structure form according to different range, also is an important factor for its performance [2,5-7].
Journal of Chongqing Petroleum College,Vol.6.No1.2004:37-38.
Journal of Aerospace Power, Vol.22 No.3 Mar. 2007 :432-438 .
Journal of Experimental Mechanics, Vol.22 No.6 Dec. 2007 :612-616.
Use different rubber materials and different structure form according to different range, also is an important factor for its performance [2,5-7].
Journal of Chongqing Petroleum College,Vol.6.No1.2004:37-38.
Journal of Aerospace Power, Vol.22 No.3 Mar. 2007 :432-438 .
Journal of Experimental Mechanics, Vol.22 No.6 Dec. 2007 :612-616.
Online since: April 2021
Authors: Ramoshweu Solomon Lebelo, Samuel Olumide Adesanya, Radley Kebarapetse Mahlobo
Thermal stability in a stockpile of reactive materials is analyzed in this article.
A stockpile of reactive materials can be of coal, hay, wood, wool or rubbish dumbed in an open veld [1,2].
Experimental work to study thermal stability of reactive materials is available in [15-19], where thermal analysis techniques are applied.
Makinde, On the thermal decomposition of reactive materials of variable thermal conductivity and heat loss characteristics in a long pipe, J.
Jesionowski, Influence of processing conditions on the thermal stability and mechanical properties of pp/silica-lignin composite, International Journal of Polymer Science (2016) ID 1627258, 1 – 9
A stockpile of reactive materials can be of coal, hay, wood, wool or rubbish dumbed in an open veld [1,2].
Experimental work to study thermal stability of reactive materials is available in [15-19], where thermal analysis techniques are applied.
Makinde, On the thermal decomposition of reactive materials of variable thermal conductivity and heat loss characteristics in a long pipe, J.
Jesionowski, Influence of processing conditions on the thermal stability and mechanical properties of pp/silica-lignin composite, International Journal of Polymer Science (2016) ID 1627258, 1 – 9
Online since: September 2019
Authors: Mary Donnabelle L. Balela, Nathaniel De Guzman
Balela1,b
1Sustainable Electronic Materials Group, Department of Mining, Metallurgical and Materials Engineering, University of the Philippines, 1101 Diliman, Quezon City, Philippines
antdeguzman15@gmail.com and bmdlbalela1@gmail.com
Keywords: Silver nanowires, Transparent conducting electrodes, Corrosion, Silver sulfide, Atmospheric gases
Abstract.
Karatepe, Fabrication of carbon nanotube transparent conductive films by vacuum filtration method, Materials Letters 223 (2018) 210-214 [2] D.
Awuzie, Conducting Polymers, Materials Today, 4 (4) (2017) 5721-5726 [6] S.
Wei, Silver nanowires: Synthesis technologies, growth mechanism and multifunctional applications, Materials Science and Engineering: B, 223 (2017) 1-23 [8] N.
Yacaman, Corrosion at the nanoscale: The case of silver nanowires and nanoparticles“ Chemistry of Materials 17 (24), (2005) 6042-6052 [15] D.C.
Karatepe, Fabrication of carbon nanotube transparent conductive films by vacuum filtration method, Materials Letters 223 (2018) 210-214 [2] D.
Awuzie, Conducting Polymers, Materials Today, 4 (4) (2017) 5721-5726 [6] S.
Wei, Silver nanowires: Synthesis technologies, growth mechanism and multifunctional applications, Materials Science and Engineering: B, 223 (2017) 1-23 [8] N.
Yacaman, Corrosion at the nanoscale: The case of silver nanowires and nanoparticles“ Chemistry of Materials 17 (24), (2005) 6042-6052 [15] D.C.
Online since: August 2011
Authors: Fan Wang
Meanwhile the price of composite materials is more expensive than the price of the traditional construction materials.
Conclusions The 21st century is the era of composite materials.
Elsevier Science Ltd.2001:27-40
Hong Kong: Elsevier Science Ltd, 2001:27-40
Journal of Zhejiang University of Technology, 2003 (2)
Conclusions The 21st century is the era of composite materials.
Elsevier Science Ltd.2001:27-40
Hong Kong: Elsevier Science Ltd, 2001:27-40
Journal of Zhejiang University of Technology, 2003 (2)