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Online since: September 2010
Authors: X. Miao, Ross Crawford, W. Fan, Yin Xiao, G. Liu
Polymer microspheres loaded with bioactive particles, biomolecules, proteins, and/or
growth factors play important roles in tissue engineering, drug delivery, and cell therapy.
Such a phenomenon has been used to produce porous polymers as scaffolds for tissue engineering [18].
For cartilage tissue engineering, a high mechanical strength, a light weight, and a sufficient amount of pore space for nutrition supply are needed.
The microspheres can be bonded under a low temperature/ mild solvent condition to meet the scaffold requirements for cartilage tissue engineering.
Fan: Journal of Applied Polymer Science, Vol.109(2) (2008) p.1232-124.
Such a phenomenon has been used to produce porous polymers as scaffolds for tissue engineering [18].
For cartilage tissue engineering, a high mechanical strength, a light weight, and a sufficient amount of pore space for nutrition supply are needed.
The microspheres can be bonded under a low temperature/ mild solvent condition to meet the scaffold requirements for cartilage tissue engineering.
Fan: Journal of Applied Polymer Science, Vol.109(2) (2008) p.1232-124.
Online since: November 2010
Authors: L.M. Brown
The foundations laid by
Tabor [23] and by engineering continuum mechanics as in Johnson's book [24] are remarkably
sound.
However, with continuing reduction in the size of mechanical components, the indentation size effect is of potential engineering importance, as well as bringing about a profound change in the theories of plasticity.
Also the view of Chaudhri [4] that flow occurs first into the material and then upwards towards the surface is well established, particularly for ceramics like MgO.
M.; Journal of Materials Research Vol 7, (1992), p1564; also Vol 19 (2004) p 3
Borodich and Leon M.Keer; International Journal of Solids and Structures, Vol 41 (2004) p 2479.
However, with continuing reduction in the size of mechanical components, the indentation size effect is of potential engineering importance, as well as bringing about a profound change in the theories of plasticity.
Also the view of Chaudhri [4] that flow occurs first into the material and then upwards towards the surface is well established, particularly for ceramics like MgO.
M.; Journal of Materials Research Vol 7, (1992), p1564; also Vol 19 (2004) p 3
Borodich and Leon M.Keer; International Journal of Solids and Structures, Vol 41 (2004) p 2479.
Online since: March 2015
Authors: Manuel García-Méndez, Alejandro Torres-Castro, Ubaldo Ortiz-Méndez, Álvaro Bedoya-Calle, Sadasivan Shaji
Annett Thøgersen, Margrethe Rein, Edouard Monakhov, Jeyanthinath Mayandi, and Spyros Diplas, “Elemental distribution and oxygen deficiency of magnetron sputtered indium tin oxide films”, Journal of Applied Physics 109, 113532 (2011): 1-9
[5].
Journal of Alloys and Compounds 371. 157-159 (2004)
Journal of Physics E: Scientific Instruments, Vol. 9, (1976) [16].
“Investigations on the optical constants of indium oxide thin films prepared by ultrasonic spray pyrolysis”, Material Sciences and Engineering B 118 (2005): 175-178 [24].
Ceramics International 37 615-619 (2011) [28].
Journal of Alloys and Compounds 371. 157-159 (2004)
Journal of Physics E: Scientific Instruments, Vol. 9, (1976) [16].
“Investigations on the optical constants of indium oxide thin films prepared by ultrasonic spray pyrolysis”, Material Sciences and Engineering B 118 (2005): 175-178 [24].
Ceramics International 37 615-619 (2011) [28].
Effect of Substrate and Film Thickness on Structural and Photocatalytic Properties of ZnO Thin Films
Online since: March 2025
Authors: Ivna Kavre Piltaver, Robert Peter, Ivana Jelovica Badovinac, Ales Omerzu, Karlo Velican
Maaza, Elucidation of photocatalysis, photoluminescence and antibacterial studies of ZnO thin films by spin coating method, Journal of Photochemistry and Photobiology B: Biology, 173 (2017) 466–475
Emin, Preparation of porous α-Fe2O3 thin films for efficient photoelectrocatalytic degradation of basic blue 41 dye, Journal of Environmental Chemical Engineering, 9 (2021) 105495
Niinistö, Synthesis and Surface Engineering of Complex Nanostructures by Atomic Layer Deposition, Adv.
Park, Effects of atomic layer deposition conditions on the formation of thin ZnO films and their photocatalytic characteristics, Ceramics International, 45 (2019) 18823−18830
Marsal, Nanoporous anodic alumina with ohmic contact between substrate and infill: Application to perovskite solar cells, Energy Science & Engineering, 10 (2022) 30–42
Emin, Preparation of porous α-Fe2O3 thin films for efficient photoelectrocatalytic degradation of basic blue 41 dye, Journal of Environmental Chemical Engineering, 9 (2021) 105495
Niinistö, Synthesis and Surface Engineering of Complex Nanostructures by Atomic Layer Deposition, Adv.
Park, Effects of atomic layer deposition conditions on the formation of thin ZnO films and their photocatalytic characteristics, Ceramics International, 45 (2019) 18823−18830
Marsal, Nanoporous anodic alumina with ohmic contact between substrate and infill: Application to perovskite solar cells, Energy Science & Engineering, 10 (2022) 30–42
Online since: December 2024
Authors: Dang Quoc Khanh, Vuong Hung Pham, Van Hao Pham, Nguyen Kim Khanh Linh, Nguyen Thi Ngoc, Tu Anh Nguyen, Thuan Quang Nguyen, Thao Thu Le, Trang Thuy Thi Nguyen
Witte, Biodegradable metals, Materials Science and Engineering R: Reports 77 (2014) 1–34. https://doi.org/10.1016/j.mser.2014.01.001
Okido, Hydrothermal treatment of titanium alloys for the enhancement of osteoconductivity, Materials Science and Engineering: C 49 (2015) 430–435. https://doi.org/10.1016/J.MSEC.2015.01.031
Dunand, Titanium foams produced by solid-state replication of NaCl powders, Materials Science and Engineering: A 528 (2010) 691–697. https://doi.org/10.1016/J.MSEA.2010.09.054
Ramakrishna, Recent advancements in additive manufacturing technologies for porous material applications, International Journal of Advanced Manufacturing Technology 105 (2019) 193–215. https://doi.org/10.1007/s00170-019-04116-z
Matizamhuka, Influence of spark plasma sintering temperature on porous titanium microstructural integrity, airflow resistance, and space holder removal, The International Journal of Advanced Manufacturing Technology 104 (2019) 2501–2511
Okido, Hydrothermal treatment of titanium alloys for the enhancement of osteoconductivity, Materials Science and Engineering: C 49 (2015) 430–435. https://doi.org/10.1016/J.MSEC.2015.01.031
Dunand, Titanium foams produced by solid-state replication of NaCl powders, Materials Science and Engineering: A 528 (2010) 691–697. https://doi.org/10.1016/J.MSEA.2010.09.054
Ramakrishna, Recent advancements in additive manufacturing technologies for porous material applications, International Journal of Advanced Manufacturing Technology 105 (2019) 193–215. https://doi.org/10.1007/s00170-019-04116-z
Matizamhuka, Influence of spark plasma sintering temperature on porous titanium microstructural integrity, airflow resistance, and space holder removal, The International Journal of Advanced Manufacturing Technology 104 (2019) 2501–2511
Online since: February 2014
Authors: Hugo Luis Chávez-García, Juan Carlos Arteaga-Arcos, Fenando Augusto Velasco-Ávalos, Wilfrido Martínez-Molina, Elia Mercedes Alonso Guzmán, Andrés Antonio Torres-Acosta, Juan Alberto Bedolla-Arroyo, Cindy Lara Gómez
Velasco-Ávalos1,h.
1CAC-UMSNH-147, Department, of Materials, Faculty of Civil Engineering, Universidad Michoacana de San Nicolás de Hidalgo, Morelia, Michoacan, Mexico, 58040.
2Engineering Faculty, Universidad Autónoma del Estado de México, Toluca, México, 50100
3Marist University of Queretaro A.C., Santiago de Queretaro, Queretaro, Mexico, 76000
4 CAEC-UMSNH-171, ArchitectureFaculty, Universidad Michoacana de San Nicolás de Hidalgo, Morelia, Michoacan, Mexico, 58040.
The burnt of fuels, the incipient industry, sulphur product of the volcanic emissions, burnt of wood to produce ceramic and to cook, caused patinas on the facades, especially in the ones oriented towards the dominant wind direction, S-SW.
Lal Gauri and Holdren, Jr G.C., "Pollutant effects on stone monuments," Environmental Science and Technology, vol. 15, no. 4, pp. 386-390, 1981. [4] J.E Yocom, "Air pollution damage to buildings on the Acropolis," Journal of the Air Pollution Association Contro, vol. 29, no. 4, pp. 333-338, 1979. [5] A Coursimault, J Donati, and H Viellard, "Pollution Automobile due aux hydrocarbures aromatiques monocycliques to Paris," The Science of the Total Environment, vol. 169, no. 1-3, pp. 17-23, 1995. [6] Bernard M Feilden, "Conservation of Historic Buildings," in Butterworth Architecture.: Butterworth-Heinemann LTD, Chapter 7, ISBN 0750658630, 1982, pp. 91-116. [7] ASTM, American for Society Testing and Materials, 2000. [8] Colloque International, "Alteration et Protection des Monuments in Pierre, Colloque International Alteration ET Protection DES Monuments in Pierre Methods experimentals.," , 1978. [9] R.F Griffiths and I.D Roberts, "Droplet evaporation from porous surfaces; model validation
The burnt of fuels, the incipient industry, sulphur product of the volcanic emissions, burnt of wood to produce ceramic and to cook, caused patinas on the facades, especially in the ones oriented towards the dominant wind direction, S-SW.
Lal Gauri and Holdren, Jr G.C., "Pollutant effects on stone monuments," Environmental Science and Technology, vol. 15, no. 4, pp. 386-390, 1981. [4] J.E Yocom, "Air pollution damage to buildings on the Acropolis," Journal of the Air Pollution Association Contro, vol. 29, no. 4, pp. 333-338, 1979. [5] A Coursimault, J Donati, and H Viellard, "Pollution Automobile due aux hydrocarbures aromatiques monocycliques to Paris," The Science of the Total Environment, vol. 169, no. 1-3, pp. 17-23, 1995. [6] Bernard M Feilden, "Conservation of Historic Buildings," in Butterworth Architecture.: Butterworth-Heinemann LTD, Chapter 7, ISBN 0750658630, 1982, pp. 91-116. [7] ASTM, American for Society Testing and Materials, 2000. [8] Colloque International, "Alteration et Protection des Monuments in Pierre, Colloque International Alteration ET Protection DES Monuments in Pierre Methods experimentals.," , 1978. [9] R.F Griffiths and I.D Roberts, "Droplet evaporation from porous surfaces; model validation
Online since: June 2010
Authors: Dong Lu Shi, Eleni Katsanevakis, Ning Zhang, Xue Jun Wen
Bone tissue engineering: the role of interstitial fluid flow.
Surface modification of polyester biomaterials for tissue engineering.
Biomimetic polymer/apatite composite scaffolds for mineralized tissue engineering.
Review: mineralization of synthetic polymer scaffolds for bone tissue engineering.
Poly(alpha-hydroxyl acids)/hydroxyapatite porous composites for bonetissue engineering.
Surface modification of polyester biomaterials for tissue engineering.
Biomimetic polymer/apatite composite scaffolds for mineralized tissue engineering.
Review: mineralization of synthetic polymer scaffolds for bone tissue engineering.
Poly(alpha-hydroxyl acids)/hydroxyapatite porous composites for bonetissue engineering.
Online since: January 2022
Authors: Yan Jun Liu, Zhao Jia Wang, Run Feng Li, Rui Lai Xu
., a High-Reactivity Metakaolin: A New Generation Mineral Admixture, Concrete International.
The effect of reaction atmosphere on the early stage carbon-thermal reduction of kaolinite: an XRD, 29Si and 27Al MAS NMR study, Journal of Materials Science April 1994, DOI: 10.1007/BF00349958
Tsivilis, Metakaolin as supplementary cementitious material, Optimization of kaolin to metakaolin conversion, Journal of Thermal Analysis and Calorimetry, Vol. 81 (2005) 457–462
Deshpande, Metakaolin- Pozzolanic Material For Cement in High Strength Concrete, IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE)ISSN: 2278-1684, PP: 46-49
[22] ĽUDOVÍT KRAJČI, IVAN JANOTKA, FRANCISCA PUERTAS, MARTA PALACIOS, MARTA KULIFFAYOVÁ, Long-term properties of cement composites with various Metakaolinite content, Ceramics – Silikáty 57 (1) 74-81 (2013)
The effect of reaction atmosphere on the early stage carbon-thermal reduction of kaolinite: an XRD, 29Si and 27Al MAS NMR study, Journal of Materials Science April 1994, DOI: 10.1007/BF00349958
Tsivilis, Metakaolin as supplementary cementitious material, Optimization of kaolin to metakaolin conversion, Journal of Thermal Analysis and Calorimetry, Vol. 81 (2005) 457–462
Deshpande, Metakaolin- Pozzolanic Material For Cement in High Strength Concrete, IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE)ISSN: 2278-1684, PP: 46-49
[22] ĽUDOVÍT KRAJČI, IVAN JANOTKA, FRANCISCA PUERTAS, MARTA PALACIOS, MARTA KULIFFAYOVÁ, Long-term properties of cement composites with various Metakaolinite content, Ceramics – Silikáty 57 (1) 74-81 (2013)
Online since: June 2022
Authors: Christelle Habis, Michel Aillerie, Jean Zaraket
Considering the two parts of this contribution on TCO as a whole, mainly oriented to photovoltaic applications, it can be considered as a useful summary tool for researchers working in this domain of electrical engineering topics.
Özgür et al., A comprehensive review of ZnO materials and devices, Journal of Applied Physics, 98 (2005) 041301
Vijayakumar, Effect of precursor medium on structural, electrical and optical properties of sprayed polycrystalline ZnO thin films, Materials Science and Engineering: B, 175 (2010) 29–35
Asomoza, Electrical and optical properties of ultrasonically sprayed Al-doped zinc oxide thin films, Materials Science and Engineering: B, 174 (2010) 31–37
Maabong, Effect of doping concentration on the properties of aluminium doped zinc oxide thin films prepared by spray pyrolysis for transparent electrode applications, Ceramics International, 37 (2011) 555–560
Özgür et al., A comprehensive review of ZnO materials and devices, Journal of Applied Physics, 98 (2005) 041301
Vijayakumar, Effect of precursor medium on structural, electrical and optical properties of sprayed polycrystalline ZnO thin films, Materials Science and Engineering: B, 175 (2010) 29–35
Asomoza, Electrical and optical properties of ultrasonically sprayed Al-doped zinc oxide thin films, Materials Science and Engineering: B, 174 (2010) 31–37
Maabong, Effect of doping concentration on the properties of aluminium doped zinc oxide thin films prepared by spray pyrolysis for transparent electrode applications, Ceramics International, 37 (2011) 555–560
Online since: December 2024
Authors: O.M. Lemine, A. Sabik, M.R. Elamin, M. Alshammari, M. Hjiri, Turki Attoub, Norah Alonaizan, Ali Z. Alanzi, Moustapha Elansary, M. Henini, A. Khatab
New Journal of Chemistry 46 (2022), 5489-5504
The Journal of Physical Chemistry C 2012, 116 (48), 25602-25610
Ain Shams Engineering Journal 14(1) 2023. p. 101844
Tewari, Ritu Sharma, Deepika Sharma, "Magnetic hyperthermia cancer therapy using rare earth metal-based nanoparticles: An investigation of Lanthanum strontium Manganite’s hyperthermic properties" , Results in Engineering 20 (2023) 101537 [42] Pelayo García-Acevedoa, Zulema Vargas-Osorio, Brenda Velasco, Manuel A.
Monfalouti, "Evaluating of novel Mn–Mg–Co ferrite nanoparticles for biomedical applications: From synthesis to biological activities", Ceramics International, 49(2023), Pages 40421-40434
The Journal of Physical Chemistry C 2012, 116 (48), 25602-25610
Ain Shams Engineering Journal 14(1) 2023. p. 101844
Tewari, Ritu Sharma, Deepika Sharma, "Magnetic hyperthermia cancer therapy using rare earth metal-based nanoparticles: An investigation of Lanthanum strontium Manganite’s hyperthermic properties" , Results in Engineering 20 (2023) 101537 [42] Pelayo García-Acevedoa, Zulema Vargas-Osorio, Brenda Velasco, Manuel A.
Monfalouti, "Evaluating of novel Mn–Mg–Co ferrite nanoparticles for biomedical applications: From synthesis to biological activities", Ceramics International, 49(2023), Pages 40421-40434