Zobrazeno 1 - 10
of 23
pro vyhledávání: '"Balu Kolathupalayam Shanmugam"'
Autor:
Saha, Raunak, Karthik, Subramani, Balu, Kolathupalayam Shanmugam, Suriyaprabha, Rangaraj, Siva, Palanisamy, Rajendran, Venkatachalam
Publikováno v:
In Materials Chemistry and Physics 15 April 2018 209:208-216
Autor:
Karthik, Subramani, Siva, Palanisamy, Balu, Kolathupalayam Shanmugam, Suriyaprabha, Rangaraj, Rajendran, Venkatachalam, Maaza, Malik
Publikováno v:
In Advanced Powder Technology December 2017 28(12):3184-3194
Autor:
Balu Kolathupalayam Shanmugam, Karthik Arumugam, Surendhiran Srinivasan, Sruthi Narayanasamy, Savitha Saravanan
Publikováno v:
Polymers for Advanced Technologies.
Autor:
Balu Kolathupalayam, Shanmugam, Suriyaprabha, Rangaraj, Karthik, Subramani, Surendhiran, Srinivasan, Narthana, Kandhasamy, Karthik, Arumugam, Manojkumar, Periyasamy, Wilhelm K, Aicher, Rajendran, Venkatachalam
Publikováno v:
Journal of Biomedical Materials Research Part B: Applied Biomaterials. 110:1942-1955
Nanostructured materials possess unique structural and functional properties that play a crucial position in tissue engineering applications. Present investigation is aimed to synthesize chitosan-sodium alginate (CS) nanocomposite using hydrothermall
Autor:
Balu Kolathupalayam Shanmugam, Vinoth Murugan, Arumugam Karthik, Suriyaprabha Rangaraj, Karthik Subramani, Surendhiran Srinivasan, Narthana Kandhasamy, Wilhelm K. Aicher, Venkatachalam Rajendran
Publikováno v:
International Journal of Polymeric Materials and Polymeric Biomaterials. 72:537-549
Autor:
Vinoth Murugan, Suriyaprabha Rangaraj, Surendhiran Srinivasan, Rajendran Venkatachalam, Balu Kolathupalayam Shanmugam, Oscar Komla Awitor, Chiristophe Massard, Karthik Subramani
Publikováno v:
Journal of Coatings Technology and Research
Journal of Coatings Technology and Research, Springer Verlag (Germany), 2020, 17 (5), pp.1363-1375. ⟨10.1007/s11998-020-00357-w⟩
Journal of Coatings Technology and Research, Springer Verlag (Germany), 2020, 17 (5), pp.1363-1375. ⟨10.1007/s11998-020-00357-w⟩
In the current times, the application of nanoparticles in the textile industry has become increasingly high due to the possibility of having anticipated properties, such as captivating colors, superior stability, antibacterial activity, and high-end
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::deda2232872b3982b4778d53160e1ac1
https://hal.archives-ouvertes.fr/hal-03030522
https://hal.archives-ouvertes.fr/hal-03030522
Autor:
Vinoth Murugan, Rajendran Venkatachalam, Suriyaprabha Rangaraj, Raunak Saha, Siva Palanisamy, Wilhelm K. Aicher, Surendhiran Srinivasan, Balu Kolathupalayam Shanmugam, Karthik Subramani
Publikováno v:
SN Applied Sciences. 2
The present study is aimed at the synthesis of different herbal nanoparticles from Acalypha indica, Azadirachta indica, Piper betle, Tridax procumbens and Aloe vera plant leaves through wet processing method i.e., solution based synthesis for the dev
Autor:
Balu Kolathupalayam Shanmugam, Karthik Subramani, Manivasakan Palanisamy, Vinoth Murugan, Rajendran Venkatachalam, Suriyaprabha Rangaraj, Valiyaveettil Suresh
Publikováno v:
Journal of Alloys and Compounds. 723:698-707
Application of nanoparticles in textile industry has recently risen owing to the possibility of incorporating desirable properties such as fascinating colors, enhanced stability, antibacterial activity and UV protection to the coated fabrics. In this
Autor:
Balu, Kolathupalayam Shanmugam, Suriyaprabha, Rangaraj, Karthik, Subramani, Surendhiran, Srinivasan, Wilhelm K, Aicher, Rajendran, Venkatachalam
Publikováno v:
Materials scienceengineering. C, Materials for biological applications. 110
The study is aimed to synthesize potent metal oxide based biomimetic nanocomposites to overcome the risk associated with artificial bone tissue engineering. High purity TiO
Autor:
Suriyaprabha Rangaraj, Karthik Subramani, Surendhiran Srinivasan, Balu Kolathupalayam Shanmugam, Rajendran Venkatachalam, Wilhelm K. Aicher
Publikováno v:
Materials Science and Engineering: C. 110:110710
The study is aimed to synthesize potent metal oxide based biomimetic nanocomposites to overcome the risk associated with artificial bone tissue engineering. High purity TiO2 nanoparticles are synthesized via hydrothermal route. A biomimetic nanocompo