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Malus domestica and Solanum lycopersicum Mixtures for the Synthesis of Graphene Silver and Zinc Oxide Nanocomposites
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作者 Rachel Fanelwa Ajayi Siphokazi Tshoko +3 位作者 Candice Franke Nokwanda Ngema Veli Thipe Takalani Mulaudzi 《Journal of Surface Engineered Materials and Advanced Technology》 CAS 2022年第4期61-81,共21页
This study reports on the novel and simple green method involving the use of apple (Malus domestica) and tomato (Solanum lycopersicum) extracts in the synthesis of electroactive layers of silver nanoparticles|graphene... This study reports on the novel and simple green method involving the use of apple (Malus domestica) and tomato (Solanum lycopersicum) extracts in the synthesis of electroactive layers of silver nanoparticles|graphene oxide (AgNPs|GO) and zinc oxide nanoparticles|graphene oxide (ZnONPs|GO). The surface morphology of the green synthesized nanocomposites was studied using High-Resolution Transmission Electron Microscopy (HRTEM), High-Resolution Scanning Electron Microscopy (HRSEM) while the elemental analysis was studied using Fourier Transform Infrared Spectroscopy (FTIR), Raman spectroscopy and X-Ray diffraction (XRD) and their optical properties were further characterised using Ultraviolet Spectroscopy (UV-vis). The electrochemical studies of these nanocomposites were achieved using cyclic voltammetry (CV) where an increase in electron conductivity of the AgNPs|GO and ZnONPs|GO nanocomposite was observed. Comparatively, the silver nanoparticulate-based platforms were observed to have superior electrochemical properties as opposed to the zinc oxide-based platform. The observed electrochemical activities of the synthesized nanocomposites are a good indication of their suitability as electroactive platforms towards the development of electrochemical sensors. Electrochemical sensors are popular in the Electrochemistry field because they may be developed using different methods in order to suit their intended analytes. As such, the synthesis of a variety of electrochemical platforms provides researchers with a vast range of options to select from for the detection of analytes. 展开更多
关键词 Zinc Oxide Electrochemical Sensors Silver Nanoparticles Graphene Oxide NANOCOMPOSITES Malus domestica Solanum lycopersicum ELECTROCHEMISTRY
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Green Nanotechnology from Plant Extracts: Synthesis and Characterization of Gold Nanoparticles
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作者 Adriana Napoleão Geraldes Andressa Alves da Silva +4 位作者 Jessica Leal Gethzemani Mayeli Estrada-Villegas Nilton Lincopan Kattesh V. Katti Ademar Benévolo Lugão 《Advances in Nanoparticles》 2016年第3期176-185,共11页
The advantage of using plants in nanoparticles synthesis is that they are easily available, safe to handle and possess a broad variability of metabolites such as antioxidants, nucleotides and vitamins. The aim of this... The advantage of using plants in nanoparticles synthesis is that they are easily available, safe to handle and possess a broad variability of metabolites such as antioxidants, nucleotides and vitamins. The aim of this study was to investigate the effects of Green and Zimbro tea and also Green coconut water as a reducing and stabilizer agent in gold nanoparticle synthesis. The gold nanoparticles were characterized by UV-Vis absorption spectroscopy, X-ray diffraction (XRD), Dynamic light scattering (DLS) and Transmission electron microscopy (TEM) analysis. Their physical stability was determined using a UV-Vis spectrophotometer over several days during storage at room temperature. We observed that green chemical process to obtain gold nanoparticles did not require any external chemicals reagent for stabilization of nanoparticulate. Absorption measurements indicated that the plasmon resonance wavelength appears around 530 nm. X-ray diffracto-grams of gold nanoparticles evidenced the presence of Au-rich (fcc) phases. TEM analysis showed a homogeneous dispersion of nanoparticles and some agglomerates. Differences in size and shape of the nanoparticles were observed. Zeta potential of AuNPs synthetized in presence of Green tea was -33 mV indicating stability of the synthesized nanoparticles. 展开更多
关键词 Green Nanotechnology Gold Nanoparticles Camellia sinensis Juniperus communis Green Coconut Water
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Introduction to Foamability Study of a LDPE Subjected to Gamma Radiation
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作者 Elizabeth C.L.Cardoso Sandra R.Scagliusi +1 位作者 Duclerc F.Parra Ademar B.Lugão 《材料科学与工程(中英文B版)》 2022年第2期71-74,共4页
Nowadays,polymer foams have a wide application area due to their light weight,emphasizing resistance to impact,high thermal insulation and damping properties,among others.So,automotive,packing industry,electronic,aero... Nowadays,polymer foams have a wide application area due to their light weight,emphasizing resistance to impact,high thermal insulation and damping properties,among others.So,automotive,packing industry,electronic,aerospace,building construction,bedding and even medical applications are some of the fields where polymer foams are applied.Foams can be classified as open and closed:Closed-cell foam is provided with tiny and discrete pockets of gas,each one totally enclosed within polymer walls;open cell foam has tiny cells which are not completely closed.In this work,LDPE(low density polyethylene)resin foamability was investigated after exposure to ionizing radiation(gamma),at 5,10 and 15 kGy.Characterizations included:melt flow index,melt strength and scanning electron microscopy. 展开更多
关键词 LDPE FOAMS melt strength GAMMA-RADIATION
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