Your browser doesn't support javascript.
loading
Syzgium cumini seed/poly vinyl alcohol based water resistant biodegradable nano-cellulose composite reinforced with zinc oxide and silver oxide nanoparticles for improved mechanical properties.
Siddique, Nida; Din, Muhammad Imran; Hussain, Zaib; Khalid, Rida; Alsafari, Ibrahim A.
Afiliação
  • Siddique N; School of Chemistry, University of the Punjab, New Campus, Lahore 54590, Pakistan.
  • Din MI; School of Chemistry, University of the Punjab, New Campus, Lahore 54590, Pakistan. Electronic address: Imrandin2007@gmail.com.
  • Hussain Z; School of Chemistry, University of the Punjab, New Campus, Lahore 54590, Pakistan. Electronic address: zaib.chem@pu.edu.pk.
  • Khalid R; School of Chemistry, University of the Punjab, New Campus, Lahore 54590, Pakistan.
  • Alsafari IA; Department of Biology, College of Science, University of Hafr Al Batin, P.O. Box 1803, Hafar Al Batin 31991, Saudi Arabia.
Int J Biol Macromol ; 277(Pt 2): 134218, 2024 Oct.
Article em En | MEDLINE | ID: mdl-39069065
ABSTRACT
The current work explored a comparative study of biodegradable jamun seed/polyvinyl alcohol (JS) nanocomposites reinforced with varying concentrations of ZnO and Ag2O nano-fillers. The effect of spherical shaped ZnO and Ag2O nanoparticles (NPs) on the on structure, morphology, swelling and solubility, crystallinity and mechanical properties together with biodegradation performance of the composite films was fully studied. SEM results showed uniform distribution of ZnO and Ag2O nanofillers into the JS matrix and dense or compact nanocomposite films were formed. JS-ZnO and JS-Ag2O nanocomposites with 0.5 wt% ZnO and Ag2O content showed maximum crystallinity i.e. 11.3 and 9.58 %, respectively, as determined by XRD. When compared to the virgin JS film (8.41 MPa), the resultant JS-ZnO-0.5 and JS-Ag2O-0.5 nanocomposites showed significantly enhanced tensile strength (35.7 MPa, 29.2 MPa), elongation at break (15.42 %, 14.62 %) and Young's modulus (141 MPa, 126 MPa), respectively. Also, reduced swelling (120.4 % and 116.1 %) and solubility ratio (17.45 % and 18.42 %) was observed for JS-ZnO-0.5 and JS-Ag2O-0.5 nanocomposites, respectively. Biodegradation results showed that maximum degradation (88 %) was achieved for the JS film within 180 days of soil burial whereas JS-ZnO-0.1 and JS-Ag2O-0.1 nanocomposites showed 78 % and 72 % degradation within 180 days, respectively.
Assuntos
Palavras-chave

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Álcool de Polivinil / Óxido de Zinco / Água / Celulose / Compostos de Prata / Nanocompostos Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Álcool de Polivinil / Óxido de Zinco / Água / Celulose / Compostos de Prata / Nanocompostos Idioma: En Ano de publicação: 2024 Tipo de documento: Article