LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION

The objective of this study was to test the bonding performance of nanoscale bondlines, which were fabricated with polyelectrolytes by layer-by-layer assembly process onto wooden substrates. In this study, environmental scanning electron microscopy (ESEM) was used to characterize adsorbed multilayer...

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Main Authors: Yu Zhou, Scott Renneckar, Qingqing Li, Karthik V Pillai, Zhiyuan Lin, W Travis Church
Format: Article
Language:English
Published: North Carolina State University 2010-06-01
Series:BioResources
Subjects:
Online Access:http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_05_3_1530_Zhou_RPLLC_Layer_by_Layer_Bondlines_Adhesion/657
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author Yu Zhou
Scott Renneckar
Qingqing Li
Karthik V Pillai
Zhiyuan Lin
W Travis Church
author_facet Yu Zhou
Scott Renneckar
Qingqing Li
Karthik V Pillai
Zhiyuan Lin
W Travis Church
author_sort Yu Zhou
collection DOAJ
description The objective of this study was to test the bonding performance of nanoscale bondlines, which were fabricated with polyelectrolytes by layer-by-layer assembly process onto wooden substrates. In this study, environmental scanning electron microscopy (ESEM) was used to characterize adsorbed multilayers of polyacrylic acid and polyallylamine hydrochloride on the wood surface. Cross-linking between PAA and PAH layers at various temperatures was studied using Fourier Transform Infrared Spectroscopy (FTIR). The evaluation of polyelectrolyte multilayers as bonding agents for wood was conducted through compression shear block and flexural bending tests. Altogether, this research demonstrates a route to utilize nanoscale coatings as bonding agents.
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spelling doaj.art-b2742ded93fd477ebe56ce8f01742a5b2022-12-21T22:46:26ZengNorth Carolina State UniversityBioResources1930-21262010-06-015315301541LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESIONYu ZhouScott RenneckarQingqing LiKarthik V PillaiZhiyuan LinW Travis ChurchThe objective of this study was to test the bonding performance of nanoscale bondlines, which were fabricated with polyelectrolytes by layer-by-layer assembly process onto wooden substrates. In this study, environmental scanning electron microscopy (ESEM) was used to characterize adsorbed multilayers of polyacrylic acid and polyallylamine hydrochloride on the wood surface. Cross-linking between PAA and PAH layers at various temperatures was studied using Fourier Transform Infrared Spectroscopy (FTIR). The evaluation of polyelectrolyte multilayers as bonding agents for wood was conducted through compression shear block and flexural bending tests. Altogether, this research demonstrates a route to utilize nanoscale coatings as bonding agents.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_05_3_1530_Zhou_RPLLC_Layer_by_Layer_Bondlines_Adhesion/657AdhesionCompositesLayer-by- layer filmsMulti-layer filmsPolyelectrolytes
spellingShingle Yu Zhou
Scott Renneckar
Qingqing Li
Karthik V Pillai
Zhiyuan Lin
W Travis Church
LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION
BioResources
Adhesion
Composites
Layer-by- layer films
Multi-layer films
Polyelectrolytes
title LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION
title_full LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION
title_fullStr LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION
title_full_unstemmed LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION
title_short LAYER-BY-LAYER NANOSCALE BONDLINES FOR MACROSCALE ADHESION
title_sort layer by layer nanoscale bondlines for macroscale adhesion
topic Adhesion
Composites
Layer-by- layer films
Multi-layer films
Polyelectrolytes
url http://ojs.cnr.ncsu.edu/index.php/BioRes/article/viewFile/BioRes_05_3_1530_Zhou_RPLLC_Layer_by_Layer_Bondlines_Adhesion/657
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AT qingqingli layerbylayernanoscalebondlinesformacroscaleadhesion
AT karthikvpillai layerbylayernanoscalebondlinesformacroscaleadhesion
AT zhiyuanlin layerbylayernanoscalebondlinesformacroscaleadhesion
AT wtravischurch layerbylayernanoscalebondlinesformacroscaleadhesion