Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Mahesh, D. Bedre"'
Autor:
Raghunanadan Deshpande, Mahesh D. Bedre, Vijaykumar B. Malashetty, Abbaraju Venkataramana, Shivakumar Inamdar
Publikováno v:
Current Applied Polymer Science. 5:212-220
Background: Understanding nanocomposites' morphological characteristics is important for explaining their properties and their usefulness. Method: In this review, we present the method for interfacial synthesis of polypyrrole and its gold nanocomposi
Autor:
Balaji, D.S., Basavaraja, S., Deshpande, R., Mahesh, D. Bedre, Prabhakar, B.K., Venkataraman, A.
Publikováno v:
In Colloids and Surfaces B: Biointerfaces 2009 68(1):88-92
Publikováno v:
American Journal of Materials Science. 2:39-43
Polyaniline (Pani) and Polyaniline-Co3O4 nanocomposites (PCO) were prepared by employing interfacial po- lymerization using ammonium persulphate as an oxidizing agent. The formations of regular nanocomposite materials were studied by Fourier transfor
Autor:
Raghunadan Deshpande, Swaruparani H, Mahesh D. Bedre, Sridhar Pande, Ravishankar Bhat, Abbaraju Venkataraman
Publikováno v:
Nanoscience and Nanotechnology. 2:90-98
In this work synthesis & characterization of composite materials based on montmo rillonite (MMT) clay and intrinsically conducting polyaniline (PANI) is studied. The MMT type of clay used is locally available in the region which was used after chemic
Autor:
S. Basavaraja, P. M. Prithviraj Swamy, Mahesh D. Bedre, Deshpande Raghunandan, Abbaraju Venkataraman, D. S. Balaji
Publikováno v:
Bulletin of Materials Science. 34:1313-1317
Nanometer-sized α-Fe2O3 particles have been prepared by a simple solvothermal method using ferric acetylacetonate as a precursor. The products were characterized by X-ray diffraction (XRD), energy dispersive X-ray microanalysis (EDAX), X-ray photoel
Autor:
Basawaraj Bendegumble, Prashant Arunkumar Borgaonkar, Mahesh D. Bedre, Deshpande Raghunandan, Mantripragada Bhagawanraju, Venkataramana Abbaraju, Manjunath S. Yalagatti, Do Sung Huh
Publikováno v:
American Journal of Analytical Chemistry. :475-483
Microwave-assisted rapid extracellular biosynthesis of silver nanoparticles was carried out by using carom seed (Trachyspermum copticum) extract as the reducing agent. The reaction mixture containing AgNO3 and carom seed extract when exposed to micro
Autor:
Abbaraju Venkataraman, S. Y. Manjunath, Balaji D. Sawle, S. Basavaraja, Deshpande Raghunandan, Mahesh D. Bedre
Publikováno v:
Colloids and Surfaces B: Biointerfaces. 79:235-240
In this paper, we stress upon rapid synthesis of irregular shape gold nanoparticles from a biological base. Treatment of macerated extracellular aqueous dried clove buds (Syzygium aromaticum) solution with the aqueous gold salt solution yielded irreg
Preparation and Characterization of Polypyrrole Silver Nanocomposites via Interfacial Polymerization
Publikováno v:
International Journal of Polymeric Materials. 59:531-543
Conducting polypyrrole silver (Ppy-AgNC) nanocomposite was synthesized by an interfacial polymerization method. Ag+ ions from the AgNO3 solution were taken in the formation of Ppy-AgNC. The incorporated silver was confirmed by X-ray diffraction (XRD)
Autor:
Abbaraju Venkataraman, V. Shivakumar, Lagashetty Arunkumar, Balaji D. Salwe, S. Basavaraja, Mahesh D. Bedre
Publikováno v:
Polymer Composites. 30:1668-1677
Polyaniline (Pani) and Polyaniline-silver nanocomposites (Pani-Ag) were prepared by employing interfacial polymerization using ammonium persulphate as an oxidizing agent. During the polymerization, the Ag+ is reduced to Ag0, and the formations of reg
Autor:
Mahesh D. Bedre, Balaji D. Sawle, Belawadi Krishnamurthy Prabhakar, Abbaraju Venkataraman, Basavaraja Salimath, Raghunandan Deshpande
Crystallized and spherical-shaped Au and Au–Ag alloy nanoparticles have been synthesized and stabilized using a fungus, F . semitectum in an aqueous system. Aqueous solutions of chloroaurate ions for Au and chloroaurate and Ag+ ions (1 : 1 ratio) f
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fc488e27aef21cd513e5edca62045137
https://europepmc.org/articles/PMC5099666/
https://europepmc.org/articles/PMC5099666/