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      A promising sustainable PHB‐ZnO composite for development of biodegradable filaments

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          Zinc oxide particles: Synthesis, properties and applications

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            Green synthesis of zinc oxide nanoparticles using Phoenix dactylifera waste as bioreductant for effective dye degradation and antibacterial performance in wastewater treatment

            Production of multi-functional zinc oxide nanoparticles (ZnO-NPs) for wastewater treatment through green-approaches is a desirable alternative for conventional synthesis routes. Biomass waste valorization for nanoparticles synthesis has received increased research attention. The present study reports date pulp waste (DPW) utilization as an effective bio-reductant for green-synthesis of ZnO-NPs. A simple and eco-friendly process with low reaction time and calcination temperature was adopted for DPW mediated ZnO-NPs (DP-ZnO-NPs) synthesis. Microscopic investigations of DP-ZnO-NPs confirmed the non-agglomeration and spherical nature of particles with mean diameter of 30 nm. EDX and XPS analysis defined the chemical composition and product purity of DP-ZnO-NPs. UV and photoluminescence studies exhibited surface plasmonic resonance at 381 nm and fluorescent nature of DP-ZnO-NPs. FTIR studies established a formation mechanism outline for DP-ZnO-NPs. XRD and Raman investigations confirmed the crystalline and hexagonal wurtzite phase of DP-ZnO-NPs. DSC/TG analysis displayed the thermal stability of DP-ZnO-NPs with <10 wt% loss upto 700 °C. Photocatalytic degradation of hazardous methylene blue and eosin yellow dyes using DP-ZnO-NPs, showed rapid decomposition rate with 90 % degradation efficiency. Additionally, DP-ZnO-NPs demonstrated significant antibacterial effects on various pathogenic bacteria in terms of zone-of-inhibition measured by disc-diffusion method. Thus, the as-prepared DP-ZnO-NPs is suitable for industrial wastewater treatment.
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              Synthetic biopolymer nanocomposites for tissue engineering scaffolds

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                Author and article information

                Contributors
                (View ORCID Profile)
                (View ORCID Profile)
                Journal
                Polymer Composites
                Polymer Composites
                Wiley
                0272-8397
                1548-0569
                January 2022
                November 10 2021
                January 2022
                : 43
                : 1
                : 144-159
                Affiliations
                [1 ]Department of Mechanic and Energy State University of Rio de Janeiro (UERJ) Resende Brazil
                [2 ]Center for Engineering, Modeling, and Applied Social Sciences (CECS) Federal University of ABC (UFABC) Santo André Brazil
                [3 ]Chemical Engineering Department, Engineering School of Lorena University of São Paulo Lorena Brazil
                Article
                10.1002/pc.26363
                324c2f58-b72f-4479-a6d1-c0f35c853707
                © 2022

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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