Journal of Minerals and Materials Characterization and Engineering

Journal of Minerals and Materials Characterization and Engineering

ISSN Print: 2327-4077
ISSN Online: 2327-4085
www.scirp.org/Journal/jmmce
E-mail: jmmce@scirp.org
"Review of Green Polymer Nanocomposites"
written by Samson O. Adeosun, G. I. Lawal, Sambo A. Balogun, Emmanuel I. Akpan,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.11 No.4, 2012
has been cited by the following article(s):
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[1] Experimental investigation on physical, mechanical, and thermal properties of jute and hemp fibers reinforced hybrid polylactic acid composites
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[2] Physical, Morphological, Structural, Thermal and Antimicrobial Characterization of Films based on Poly (Lactic Acid), Organophilic Montmorillonite and Oregano …
Materials …, 2022
[3] Green Polymer Nanocomposites in Automotive and Packaging Industries
Ur-Rashid, AB Imran… - Current …, 2022
[4] Sustainable Nanobiocomposites
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[5] Antiviral behavior of metal oxide-reinforced polymer nanocomposites
Nanoparticle-Based Polymer …, 2022
[6] Recent Advances on Polymer-Based Nanocomposite: A Brief Review
Micro and Nanosystems, 2022
[7] Recent Review on PMMA Doped with Oxide for Biomedical Fields
Journal of Applied Sciences …, 2022
[8] Sustainable Nanotechnology: Strategies, Products, and Applications
2022
[9] Green composites: Versatile uses and applications in life
Green Sustainable Process for Chemical and …, 2022
[10] Nanocomposites: An introduction
Nanotechnology in the Automotive Industry, 2022
[11] Polymer Nanocomposite Matrix-Based Nanoproducts
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[12] Fenugreek: Novel Delivery Technologies and Versatile Formulation Excipients
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[13] TAKVİYE ORANININ PLA MATRİSLİ BİYO NANOKOMPOZİTLERİN MEKANİK VE MORFOLOJİK ÖZELLİKLERİ ÜZERİNE ETKİLERİNİN İNCELENMESİ
2022
[14] Advances in nanocomposite material for Fused Filament Fabrication
Polymer-Plastics Technology and Materials, 2022
[15] (Bio) degradable Polymer Nanocomposites for Environmental Protection
Handbook of Polymer and …, 2021
[16] Pineapple Leaf Fiber Polymer Composites as a Promising Tool for Sustainable, Eco-friendly Composite Material
Journal of Natural Fibers, 2021
[17] Application and Suitability of Polymeric Materials as Insulators in Electrical Equipment
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[18] Potential applications of polycarbohydrates, lignin, proteins, polyacids, and other renewable materials for the formulation of green elastomers
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[19] Advanced natural fibre-based fully biodegradable and renewable composites and nanocomposites: a comprehensive review
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[20] Review of hospital plastic waste management strategies for Pakistan
Environmental Science and …, 2021
[21] Impact of nanoparticles on the environmental sustainability of polymer nanocomposites based on bioplastics or recycled plastics–A review of life-cycle assessment …
Journal of Cleaner …, 2021
[22] Polymeric composite materials for radiation shielding: a review
2021
[23] Cellulose nanofibers/polylactic acid based biocomposites for packaging applications
2021
[24] Thermomechanical Properties and Thermal Behavior of Poly (Lactic Acid) Composites Reinforced with TiO2 Nanofiller
2021
[25] Advances in Carbon Nanomaterial‐Based Green Nanocomposites
2020
[26] Frontiers of Applications of Nanotechnology in Biological Sciences and Green Chemistry
2020
[27] Greener Composites from Plant Fibers: Preparation, Structure, and Properties
2020
[28] Applications of Green Polymeric Nanocomposites
2020
[29] Bionanocomposites: green materials for orthopedic applications
2020
[30] Green Polymeric Nanocomposites
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[31] First Principles Calculations of Electronic, Structural and Optical Properties of (PMMA–ZrO 2–Au) and (PMMA–Al 2 O 3–Au) Nanocomposites for Optoelectronics …
2020
[32] Limitations in Commercialization of Green Polymeric Nanocomposites and Avenues for Rectification
2020
[33] Green Nanocomposites: Advances and Applications in Environmentally Friendly Carbon Nanomaterials
2020
[34] 8 Bionanocomposites
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[35] Green Adhesive for Industrial Applications
2020
[36] Chicken feather fiber—African star apple leaves bio-composite: empirical study of mechanical and morphological properties
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[37] Green synthesis of ZnO/SiO2 nanocomposite from pomegranate seed extract: coating by natural xanthan polymer and its characterisations
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[38] A comprehensive review on analysis of nanocomposites: from manufacturing to properties characterization
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[39] Applications of Green Polymeric Composite Materials
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[40] Three-dimensional cellulose-hydroxyapatite nanocomposite enriched with dexamethasone loaded metal–organic framework: a local drug delivery system for bone …
2019
[41] Biomonomers for Green Polymers: Introduction
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[42] Extraction of Nano Cellulose Fibres and Their Eco-friendly Polymer Composite
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[43] Self‐crosslinkable hydroxylated natural rubber/carboxymethyl starch blend and its properties
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[44] Eco-friendly Polymer Composite: State-of-Arts, Opportunities and Challenge
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[45] Impact of Nanoparticle Shape, Size, and Properties of the Sustainable Nanocomposites
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[46] Green synthesis of ZnO/SiO2 nanocomposite from pomegranate seed extract: coating by natural xanthan polymer and its characterizations
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[47] Eco-friendly polymer composites for green packaging: Future vision and challenges
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[48] Preparation and Characterization of Hybrid Nanocomposites for Dental Applications
2019
[49] Modified hemp fibers intended for fiber‐reinforced polymer composites used in structural applications—A review. I. Methods of modification
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[50] 1. An insight into plant-based biodegradable composites
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[51] Study of Biodegradability and Mechanical Properties of Polyvinyl Alcohol (PVA) Reinforced Celloluse Nanofiber (CNF)
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[52] The use of amylose‐rich starch nanoparticles in emulsion polymerization
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[53] Polymer Nanocomposites with Different Types of Nanofiller
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[54] Modification of LoSal water performance in reducing interfacial tension using green ZnO/SiO2 nanocomposite coated by xanthan
2018
[55] Nanokompozit Kaynağı ve Uygulama Alanı Olarak Bitkiler
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[56] The Effects of Poly(amide–imide)/SiO2 Nanocomposite Containing N‐Trimellitylimido‐l‐Methionine Diacid as a Filler on the Thermal and Morphological Properties …
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[57] Production of cellulose nanofibers from Alfa grass and application as reinforcement for polyvinyl alcohol
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[58] Polymer/SiO2 Nanocomposites: Production and Applications
Progress in Materials Science, 2018
[59] Surface Modification of Advanced and Polymer Nanocomposites
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[60] Introduction of polymer-based nanocomposites
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[61] Bionanocomposites: Green materials for a sustainable future
New Polymer Nanocomposites for Environmental Remediation, 2018
[62] An Introduction to Nanomaterials
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[63] Improvement of cellulose acetate dimensional stability by chemical crosslinking with cellulose nanocrystals
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[64] Production of starch based biopolymer by green photochemical reaction at different UV region as a food packaging material: Physicochemical characterization
International Journal of Biological Macromolecules, 2018
[65] Biopolymers, Nanocomposites, and Environmental Protection: A Far-Reaching Review
Bio-based Materials for Food Packaging, 2018
[66] Electrospun polylactic acid-chitosan composite: a bio-based alternative for inorganic composites for advanced application
Journal of Materials Science: Materials in Medicine, 2018
[67] Biocomposites Based on Cellulose Acetate and 12-Aminolauric Acid Modified Montmorillonite
IOP Conference Series: Materials Science and Engineering, 2017
[68] Effects of poly (ethylene glycol) on the morphology and properties of biocomposites based on polylactide and cellulose nanofibers
Cellulose, 2017
[69] Biodegradable Polymer–Carbon Nanotube Composites for Water and Wastewater Treatments
2017
[70] Synthesis of (PVA–PEG–PVP–ZrO2) nanocomposites for energy release and gamma shielding applications
International Journal of Plastics Technology, 2017
[71] Microfibrillated nanocellulose from balsa tree as potential reinforcement in the preparation of 'green'composites with castor seed cake
Journal of Cleaner Production, 2017
[72] Preparation and characterization of polyvinyl alcohol/chitosan composite films reinforced with cellulose nanofiber/Choo Kai Wen
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[73] ARTICLE 3: EFFECTS OF POLY (ETHYLENE GLYCOL) ON THE MORPHOLOGY AND PROPERTIES OF BIOCOMPOSITES BASED ON POLYLACTIDE AND …
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[74] Eco-polymer and Carbon Nanotube Composite: Safe Technology
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[75] Polymer materials: from the past to the future
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[76] Biodegradable Polymer-Carbon Nanotube Composites for Water and Wastewater Treatments
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[77] The surface modification of CuO nanoparticles with a flame retardant coupling agent and their influence on the thermal stability of poly (amide-imide)/CuO …
2016
[78] Application of chiral diacid N-trimellitylimido-l-valine for the surface modification of copper oxide as inorganic filler and preparation of poly(amide–imide)/cupric oxide …
2016
[79] Cellulose-Mycelia foam: novel bio-composite material
2016
[80] Chapter 18 Green Polymer Nanocomposites
2016
[81] The Use of a Green Polymer Nanocomposite in Geo-Infrastructure
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[82] Mechanical characteristics of groundnut shell particle reinforced polylactide nano fibre
2016
[83] Emancipation of Levofloxacin from Its Wheat Bran Composite
Journal of the Chemical Society of Pakistan, 2016
[84] Production And Characterisation Of A Bio-Composite From Cotton Stalk Fibre And Phenol Formaldehyde Resin
2016
[85] Compósito à base de poli (hidroxibutirato)(PHB) reforçado com fibras de rami espécie Bohemeria nivea.
CONGRESSO BRASILEIRO DE POLÍMEROS, 13, 2015
[86] Starch-based Blends
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[87] Studies on Flax/polypropylene-reinforced Composites for Automotive Applications
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[88] Recent Developments in Green Composites based on Plant Fibers-Preparation, Structure Property Studies
J Bioprocess Biotech, 2015
[89] Bio-based Wood Polymer Nanocomposites: A Sustainable High-Performance Material for Future
Eco-friendly Polymer Nanocomposites, 2015
[90] Eco-friendly Polymer Nanocomposite—Properties and Processing
Eco-friendly Polymer Nanocomposites, 2015
[91] The surface modification of CuO nanoparticles with a flame retardant coupling agent and their influence on the thermal stability of poly (amide-imide)/CuO nanocomposites
Journal of Composite Materials, 2015
[92] Improvement of barrier properties of bio-based polyester nanocomposite membranes by water-assisted extrusion
Journal of Membrane Science, 2015
[93] Melt Characteristics of Poly‐Lactide (PLA) Natural Fibre–Composites
Engineering Solutions for Sustainability: Materials and Resources II, 2015
[94] Thermal characteristics of batch-processed biodegradable cellulosic fibres
International Journal of Microstructure and Materials Properties, 2015
[95] Physicochemical and micromechanical investigation of a nanocopper impregnated fibre reinforced nanocomposite
RSC Advances, 2015
[96] Aplicación de un recubrimiento biocida en acero al carbón para enlatado de alimentos
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[97] Study of chemical and thermal properties of kenaf biomass-basedpolylactic acid (PLA)
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[98] Value-Added Biopolymer Nanocomposites from Waste Eggshell-Based CaCO3 Nanoparticles as Fillers
ACS Sustainable Chemistry & Engineering, 2014
[99] Structural Characteristics of Batch Processed Agro-Waste Fibres
International Journal of Materials and Metallurgical Engineering, 2014
[100] Adhesion and Surface Issues in Biocomposites and Bionanocomposites
Reviews of Adhesion and Adhesives, 2014
[101] Development of Conductive Green Polymer Nano-Composite for use in Construction of Transportation Infrastructure
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[102] Effect of Processing Conditions on Tensile Properties of Green Composites of Castor Oil Cake Starch-Plant Fibers
J Bioprocess Biotech, 2014
[103] Tecnologia de Alimentos
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[104] Recent advances in biodegradable polymeric materials
Materials Science and Technology, 2014
[105] Pré-tratamentos na produção de nanocristais de amido de pinhão e feijão.
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[106] Green Composites From Sustainable Cellulose Nanofibrils
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[107] Adhesion imprements of lancellulose Composite interfaces
PLASTICS ENGINEERING, 2013
[108] Mechanical Properties of Cellulose‐Based Bionanocomposites
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[109] Adhesion improvements of nanocellulose composite interfaces
Plastics Engineering, 2013
[110] Green Composites
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[111] Extraction and Characterization of Micro Crystalline Cellulose from Jute and Studying the Properties of PVA/Micro Crystalline Cellulose Composite
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