Title of article :
Structural, optical, thermal and Photocatalytic properties of ZnO nanoparticles of Betel Leave by using Green synthesis method
Author/Authors :
Rajesh، S. نويسنده Department of Physics, JNTUA College of Engineering, Pulivendula, Kadapa, India , , Yadav، Lakshmi Sagar Reddy نويسنده Department. of Chemistry, BMS Institute of Technology, Bangalore, India , , Tyagarajan، Krishnan نويسنده Department of Physics, JNTUA College of Engineering, Pulivendula, Kadapa, India ,
Issue Information :
فصلنامه با شماره پیاپی 0 سال 2016
Abstract :
در اين مطالعه سنتز سبز نانوذرات اكسيد روي با استفاده از عصاره برگ بتل و استات روي بررسي شد. ذرات اكسيد روي عامل دار شده با برگ بتل از طريق پراش پرتو X، ميكروسكوپ الكتروني انتشار ميداني، فوتولومينسانس و اناليزهاي حرارتي مورد بررسي قرار گرفت. نتايج نشان داد ساختار بلوري نانوذرات هگزاگونال و اندازه آن ها 50 نانومتر مي باشد. مطالعات فوتولومينسانس نشر رنگ آبي در زول موج 463 نانومتر را تاييد كرد. كاربرد فوتوكاتاليستي براي تخريب متيلن بلو تحت نور خورشيد با نانوذرات سنتز شده بررسي گرديد.
واژگان كليدي: آناليز شناسايي، سنتز سبز، SEM، مواد انرژي خورشيدي، ZnO-NPs
Abstract :
In this present study reports the green synthesis of zinc oxide nanoparticles
using Betel leaf extracts and zinc acetate. Te functionalization of ZnO
particles through Betel leaf extract mediated bio reduction of ZnO was
investigated through X-ray difraction, Field emission scanning electron
microscopy, photoluminescence, thermal gravimetric-diferential thermal
analysis, hexagonal shaped ZnO-nanoparticles with size about 50 nm
were synthesized and characterized using X-ray difraction analysis.
Te diameter of the nanoparticles in the range of 50 nm was found
from scanning electron microscopy study. Photo luminescence study
reveals the blue emission at 463nm respectively. hermal gravimetric-
diferential thermal analysis show that the observed at 480o
C, indicating
that no decomposition occurs above this temperature. Te photocatalytic
degradation of methylene blue dye was examined using ZnO nanoparticles
under solar as well as ultra violet light irradiation of the MB dye. Te
method stands out primarily due to the fact that it is eco-friendly and
shuts down the demerits of conventional physical and chemical methods.
Tese particles are anticipated to have extensive applications in various
industries.
Journal title :
Journal of NanoStructures
Journal title :
Journal of NanoStructures