Zobrazeno 1 - 7
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pro vyhledávání: '"Jayabal, Palanisamy"'
Autor:
Anandhakumari, Govindharaj, Jayabal, Palanisamy, Balasankar, Athinarayanan, Ramasundaram, Subramaniyan, Oh, Tae Hwan, Aruchamy, Kanakaraj, Kallem, Parashuram, Polisetti, Veerababu
Publikováno v:
In Heliyon October 2023 9(10)
Autor:
Radhika Rajendhiran, Raji Atchudan, Jayabal Palanisamy, Athinarayanan Balasankar, Tae Hwan Oh, Venugopal Deivasigamani, Subramaniyan Ramasundaram
Publikováno v:
Coatings; Volume 13; Issue 3; Pages: 579
Plant extracts have been utilized as an ecofriendly natural reducing agent for the synthesis of nanomaterials, including metal oxides. Prickly pear (opuntia) fruit extract (PPE) was used as a reducing agent for the sol–gel synthesis of titanium dio
Autor:
Saravanakumar Masan, Radhika Rajendhiran, Selvakumar Pitchaiya, Nandhakumar Eswaramoorthy, Venugopal Deivasigamani, Jayabal Palanisamy
Publikováno v:
Silicon. 13:3329-3336
Spherical like-Titanium dioxide (TiO2) nanoparticles were synthesized by the green sol-gel method using Plectranthus amboinicus leaf extract for different pH values. The prepared TiO2 nanoparticles have been coated over the Indium tin oxide (ITO) sub
Autor:
Radhika Rajendhiran, Selvakumar Pitchaiya, Venugopal Deivasigamani, Saravanakumar Masan, Jayabal Palanisamy
Publikováno v:
Materials Today: Proceedings. 45:2232-2238
Nature motivates a researcher to carry out new research in science and technology, especially in the field of nanotechnology. In those natural systems, Terminalia Catappa and Carissa Carandas are one having a very significantly reducing and capping a
Publikováno v:
RSC Adv.. 4:63917-63921
Activated carbons (ACs) with a high surface area have been prepared from pumpkin stem wastes, using a simple and eco-friendly method. The as-prepared samples were characterized by field-emission scanning electron microscopy, high-resolution transmiss
Autor:
Jayabal Palanisamy, Rajesh Madhu, Vediyappan Veeramani, Shen-Ming Chen, Bih-Show Lou, Vairathevar Sivasamy Vasantha
Publikováno v:
Scientific Reports
The biomass-derived activated carbons (ACs) have been prepared with high surface areas up to 793 m2 g−1 is by ZnCl2 activation at three different temperatures, viz. AC700, AC800 and AC900. The AC samples were characterized by a variety of analytica
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