Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phenol-Furfural Resin/Graphite/Ag Based Electrically Conductive Adhesive Composites from Waste Bagasse with Enhanced Thermo-Electric Properties

View through CrossRef
This study endeavors the preparation and evaluation of Phenol Furfural Resin (PFR) from bagasse and its nanocomposites for Electrically Conductive Adhesives (ECAs) application. PFR was prepared with the furfural extracted from bagasse using modified acid digestion method. Three different formulations of PFR nanocomposites with conductive nanoparticles i.e., PFR-silver, PFR-graphite, and PFR-silver + graphite were prepared using 20-60 w/w% of fillers via impregnation method. Resultant products were characterized by FT-IR, SEM, EDS and XRD spectroscopy. Electrical conductivity was measured using four probe technique while band gap was calculated via Tauc plot. Virgin PFR has shown poor conductivity up to 2.6 × 10-4 Scm-1 while the highest conductivity achieved was 8.2 × 10-1 Scm-1 for nanocomposite constituted silver, graphite, and PFR with 40:30:20 ratios respectively. This synergism was exhibited because graphite and Ag NPs supply excellent junctions for building networks. Both tend to coalesce due to van der Waals forces and high surface energies, therefore conductive pathways numbers can be increased, and contact area can be effectively enlarged. This ternary composite has exhibited the lowest bandgap energy value i.e., 3.1 eV. Thermogravimetric temperatures T0 and Tdeg values were increased up to 120 °C and 484 °C respectively, showing significant increase in thermal stability. Therefore, the resultant nanocomposite material has good potential to be employed as ECAs in electronic industry.
Title: Phenol-Furfural Resin/Graphite/Ag Based Electrically Conductive Adhesive Composites from Waste Bagasse with Enhanced Thermo-Electric Properties
Description:
This study endeavors the preparation and evaluation of Phenol Furfural Resin (PFR) from bagasse and its nanocomposites for Electrically Conductive Adhesives (ECAs) application.
PFR was prepared with the furfural extracted from bagasse using modified acid digestion method.
Three different formulations of PFR nanocomposites with conductive nanoparticles i.
e.
, PFR-silver, PFR-graphite, and PFR-silver + graphite were prepared using 20-60 w/w% of fillers via impregnation method.
Resultant products were characterized by FT-IR, SEM, EDS and XRD spectroscopy.
Electrical conductivity was measured using four probe technique while band gap was calculated via Tauc plot.
Virgin PFR has shown poor conductivity up to 2.
6 × 10-4 Scm-1 while the highest conductivity achieved was 8.
2 × 10-1 Scm-1 for nanocomposite constituted silver, graphite, and PFR with 40:30:20 ratios respectively.
This synergism was exhibited because graphite and Ag NPs supply excellent junctions for building networks.
Both tend to coalesce due to van der Waals forces and high surface energies, therefore conductive pathways numbers can be increased, and contact area can be effectively enlarged.
This ternary composite has exhibited the lowest bandgap energy value i.
e.
, 3.
1 eV.
Thermogravimetric temperatures T0 and Tdeg values were increased up to 120 °C and 484 °C respectively, showing significant increase in thermal stability.
Therefore, the resultant nanocomposite material has good potential to be employed as ECAs in electronic industry.

Related Results

Valorization of low concentration sugar side-stream from dissolving pulp production
Valorization of low concentration sugar side-stream from dissolving pulp production
Among the platform chemicals that can be produced from lignocellulosic biomass, furfural (FUR) constitutes a promising intermediate that can be processed into a variety of advance...
Mechanical Properties of Polymer Composites with Sugarcane Bagasse Filler
Mechanical Properties of Polymer Composites with Sugarcane Bagasse Filler
Natural fibers reinforced polymer composites have gained more interest because of their biodegradable, light weight, less expensive sources, easy processing, high specific modulus ...
Synthesis of Furfural from Bagasse
Synthesis of Furfural from Bagasse
Bagasse is a waste product from the sugar industry, which is usually used as energy source in factory at present. However, the amount of bagasse left is still high enough for more ...
FURFURAL BERBASIS TANDAN KOSONG KELAPA SAWIT
FURFURAL BERBASIS TANDAN KOSONG KELAPA SAWIT
Furfural dapat diproduksi menggunakan bahan baku yang mengandung pentosan, diantaranya tandan kosong kelapa sawit. Furfural adalah senyawa aromatik aldehid bewarna kuning bening da...
Adhesion of Resin-Resin and Resin–Lithium Disilicate Ceramic: A Methodological Assessment
Adhesion of Resin-Resin and Resin–Lithium Disilicate Ceramic: A Methodological Assessment
The aim of this study was to evaluate four test methods on the adhesion of resin composite to resin composite, and resin composite to glass ceramic. Resin composite specimens (N = ...

Back to Top