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Online since: October 2011
Authors: Xiao Jun Hu, Yan Wang, Hui Yin Li, Xin Xin Li, Yong Xia Hou
Materials and Methods
Collection and analysis of soil samples.
Journal of Hazardous Materials, Vol. 143 (2007), p. 443(in Chinese) [8] Y.
Journal of Hunan University(Natural Sciences), Vol. 37 (2010), p. 75(in Chinese) [9] E.
Journal of Liaoning Technical University(Natural Science), (2009), p. 184(in Chinese) [14] H.
Environmental Science, Vol. 30 (1999), p. 1773 [15] Z.
Journal of Hazardous Materials, Vol. 143 (2007), p. 443(in Chinese) [8] Y.
Journal of Hunan University(Natural Sciences), Vol. 37 (2010), p. 75(in Chinese) [9] E.
Journal of Liaoning Technical University(Natural Science), (2009), p. 184(in Chinese) [14] H.
Environmental Science, Vol. 30 (1999), p. 1773 [15] Z.
Online since: September 2011
Authors: Ying Chen, Jia Wang, Yue Yang, Ran Wang
Experimental
Materials.
Dai: Journal of Applied Polymer Science Vol. 104 (2007), p. 111 [3] K.
Journal of Materials Chemistry Vol. 17 (2007), p. 3504 [4] Y.
Ding: Journal of Applied Polymer Science Vol. 103 (2007), p. 3113 [5] P.
Chen: Journal of Applied Polymer Science Vol. 102 (2006), p. 1478 [6] C.
Dai: Journal of Applied Polymer Science Vol. 104 (2007), p. 111 [3] K.
Journal of Materials Chemistry Vol. 17 (2007), p. 3504 [4] Y.
Ding: Journal of Applied Polymer Science Vol. 103 (2007), p. 3113 [5] P.
Chen: Journal of Applied Polymer Science Vol. 102 (2006), p. 1478 [6] C.
Online since: March 2022
Authors: Endarto Yudho Wardhono, Nufus Kanani, Wardalia Wardalia, Rahmayetty Rahmayetty
Incorporate an antibacterial in a packaging materials may be an alternative to control the bacterial growth and to extend the shelf life of food products [7].
Experimental Materials.
Zakaria et al., “Mechanical properties and morphological characterization of PLA/chitosan/epoxidized natural rubber composites,” Advances in Materials Science and Engineering, vol. 2013, 2013
Li, “Preparation of chitosan/PLA blend micro/nanofibers by electrospinning,” Materials Letters, vol. 63, no. 8, pp. 658–660, 2009
Spiridon, “PLA/chitosan/keratin composites for biomedical applications,” Materials Science and Engineering: C, vol. 40, pp. 242–247, 2014
Experimental Materials.
Zakaria et al., “Mechanical properties and morphological characterization of PLA/chitosan/epoxidized natural rubber composites,” Advances in Materials Science and Engineering, vol. 2013, 2013
Li, “Preparation of chitosan/PLA blend micro/nanofibers by electrospinning,” Materials Letters, vol. 63, no. 8, pp. 658–660, 2009
Spiridon, “PLA/chitosan/keratin composites for biomedical applications,” Materials Science and Engineering: C, vol. 40, pp. 242–247, 2014
Online since: July 2013
Authors: Giovanni Fabbrocino, Carlo Rainieri, Yi Song, Carmen Pannunzio, Mark J. Schulz, Vesselin Shanov
In this framework smart materials with sensing capabilities have recently gained attention.
Shi, A carbon nanotube strain sensor for structural health monitoring, Smart Materials andStructures 15 (2006) 737-748
Kwon, A carbon nanotube/cement composite with piezoresistive properties, Smart Materials and Structures 18 (2009)
Li, The influence of surfactants on the processing of multi-walled carbon nanotubes in reinforced cement matrix composites, Physica Status Solidi a-Applications and Materials Science 206 (2009) 2783–2790
Beaudoin, Electrical percolation phenomena in cement composites containing conductive fibres, Journal of Materials Science 31 (1996) 4093-4097
Shi, A carbon nanotube strain sensor for structural health monitoring, Smart Materials andStructures 15 (2006) 737-748
Kwon, A carbon nanotube/cement composite with piezoresistive properties, Smart Materials and Structures 18 (2009)
Li, The influence of surfactants on the processing of multi-walled carbon nanotubes in reinforced cement matrix composites, Physica Status Solidi a-Applications and Materials Science 206 (2009) 2783–2790
Beaudoin, Electrical percolation phenomena in cement composites containing conductive fibres, Journal of Materials Science 31 (1996) 4093-4097
Online since: August 2018
Authors: K. Kadirgama, A.F. Ismail, W.N.W. Salleh, N. Sazali, F.E.C. Othman
Experimental Section
Materials.
Ghosh, Journal of Membrane Science, Vol. 520 (2016), p. 221-230 [4] E.
Fuertes, Journal of Membrane Science, Vol. 228 (2004), p. 45-54 [11] N.
Jaafar, Journal of Natural Gas Science and Engineering, Vol. 49 (2018), p. 376-384 [12] N.
Ismail, Journal of Applied Polymer Science, Vol. 132 (2015), p. 42394-42399 [15] C.
Ghosh, Journal of Membrane Science, Vol. 520 (2016), p. 221-230 [4] E.
Fuertes, Journal of Membrane Science, Vol. 228 (2004), p. 45-54 [11] N.
Jaafar, Journal of Natural Gas Science and Engineering, Vol. 49 (2018), p. 376-384 [12] N.
Ismail, Journal of Applied Polymer Science, Vol. 132 (2015), p. 42394-42399 [15] C.
Online since: November 2025
Authors: Juvy J. Monserate, Gil Felicisimo Cabrera, Donn Henley R. Astrera
Monserate1,3,c
1Department of Chemistry, College of Science, Central Luzon State University,
Science City of Muñoz, Nueva Ecija 3120 Philippines
2Functional Inorganic Materials Laboratory, College of Science, Central Luzon State University, Science City of Muñoz, Nueva Ecija 3120 Philippines
3Physical and Materials Science Laboratory, College of Science, Central Luzon State University, Science City of Muñoz, Nueva Ecija 3120 Philippines
agilfelicisimo.cabrera@clsu2.edu.ph, bdhrastrera@gmail.com, c juvymonserate@clsu.edu.ph
Keywords: gold nanoparticles, ascorbic acid, monosodium glutamate, photodegradation
Abstract.
These materials exhibit strong light absorption and possess a large surface area making it a good candidate as photocatalytic materials [6-7].
The use of sunlight for photocatalysis has reportedly been utilized in the degradation of dyes and wastewater by semiconductor materials [37-38].
Asian Journal of Applied Science and Technology (AJAST), 8(2), 211-224
ACS Applied Nano Materials, 6(5), 3963-3973.
These materials exhibit strong light absorption and possess a large surface area making it a good candidate as photocatalytic materials [6-7].
The use of sunlight for photocatalysis has reportedly been utilized in the degradation of dyes and wastewater by semiconductor materials [37-38].
Asian Journal of Applied Science and Technology (AJAST), 8(2), 211-224
ACS Applied Nano Materials, 6(5), 3963-3973.
Online since: October 2016
Authors: Jun Wang, Lin Li, Huai Zhong Li
FS lasers have received a significant attention in the past decades for the processing of a range of materials, due to their extremely short pulse width and high fluence to achieve nearly damage-free ablation of materials [3].
Balasubramanium, Analysis of machining mechanism in diamond turning of germanium lenses, Procedia Materials Science, 5 (2014) 2363-2368
Rakwal, Experimental investigation of wire electrical discharge machining of gallium-doped germanium, Journal of Materials Processing Technology, 197 (2008) 419-427
Molian, A review of ultrashort pulsed laser ablation of materials, Journal of Laser Applications, 10 (1998) 18-28
Advanced Materials Research, 1136 (2016) 440-445
Balasubramanium, Analysis of machining mechanism in diamond turning of germanium lenses, Procedia Materials Science, 5 (2014) 2363-2368
Rakwal, Experimental investigation of wire electrical discharge machining of gallium-doped germanium, Journal of Materials Processing Technology, 197 (2008) 419-427
Molian, A review of ultrashort pulsed laser ablation of materials, Journal of Laser Applications, 10 (1998) 18-28
Advanced Materials Research, 1136 (2016) 440-445
Online since: January 2013
Authors: Jing Luo, Ying Sun, An Qi Ni, Yan Yi Bi, Weidong Yu
However, few textile materials are tested and assessed although laboratory testing has confirmed their biodegradability.
Materials and methods 2.1.
Journal of Engineered Fibers and Fabrics. 5(2010):42-53
Indian Journal of Biotechnology. 4(2004):186-193
Biodegradability of biodegradable/degradable plastic materials under aerobic and anaerobic conditions.
Materials and methods 2.1.
Journal of Engineered Fibers and Fabrics. 5(2010):42-53
Indian Journal of Biotechnology. 4(2004):186-193
Biodegradability of biodegradable/degradable plastic materials under aerobic and anaerobic conditions.
Online since: December 2024
Authors: Ana Cristina Vasile, Mircea Liviu Negrut, Bogdan Bolborea, Cornelia Baeră, Aurelian Gruin, Alexandra Marina Barbu, Ion Aurel Perianu
Corbu, Opportunities regarding the innovative conservation of the romanian vernacular urbanistic heritage, International Journal of Conservation Science (2023) 14(3) 913-936
[7] L.
In IOP Conference Series: Materials Science and Engineering 877(1) (2020) 012028 [33] A.S.
Applied sciences 10(22) (2020) 8210 [34] A.
Yusoff, Structural Performance Assessment of High Strength Concrete Containing Spent Garnet under Three Point Bending Test, IOP Conference Series: Materials Science and Engineering 1144(1) (2021) 012018 [45] M.A.
Varga, Analysis of Mechanical Performance of Cementitious Materials with Spent Garnets as Fine Grain Aggregate Partial Replacement, Key Engineering Materials 953 (2023) 127-139
In IOP Conference Series: Materials Science and Engineering 877(1) (2020) 012028 [33] A.S.
Applied sciences 10(22) (2020) 8210 [34] A.
Yusoff, Structural Performance Assessment of High Strength Concrete Containing Spent Garnet under Three Point Bending Test, IOP Conference Series: Materials Science and Engineering 1144(1) (2021) 012018 [45] M.A.
Varga, Analysis of Mechanical Performance of Cementitious Materials with Spent Garnets as Fine Grain Aggregate Partial Replacement, Key Engineering Materials 953 (2023) 127-139
Online since: September 2013
Authors: Hui Tang, Shan Shan Hao, Wen Xue Wang
Effect of Anti-Cracking Agent on Cracking Property of SiO2 Optical Fiber Preform by Sol-Gel Method
Shanshan Hao1, Hui Tang 1* and Wenxue Wang1
1College of Material Science& Engineering, Harbin University of Science and Technology,
Harbin, China
haoshanshan198908@163.com
*Corresponding author.
Tang Hui (1960-), professor, female, Harbin University of Science and Technology, School of Material Science and Engineering, Mainly engaged in materials teaching and research work Keywords: sol-gel, SiO2 dry gel, anti-cracking agent, transmittance Abstract.
Journal of Non-Crystalline Solids, vol. 357, pp. 194 –201, 2011
Journal of Materials Science, vol. 29 pp. 5188-5192, 1994
Journal of Materials Chemistry, vol. 13, pp. 696-699, 2003.
Tang Hui (1960-), professor, female, Harbin University of Science and Technology, School of Material Science and Engineering, Mainly engaged in materials teaching and research work Keywords: sol-gel, SiO2 dry gel, anti-cracking agent, transmittance Abstract.
Journal of Non-Crystalline Solids, vol. 357, pp. 194 –201, 2011
Journal of Materials Science, vol. 29 pp. 5188-5192, 1994
Journal of Materials Chemistry, vol. 13, pp. 696-699, 2003.