Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Dinesh Kumar Chelike"'
Autor:
Gurusamy Thangavelu, Senthil A., Mukherjee, Moumita, Layana, Kannan, Dinesh Kumar, Chelike, Sulthana, Yasmin R., Rohith Kumar, Raman, Ananthan, Alagumalai, Muthulakshmi, Vairamuthu, Mandal, Asit Baran
Publikováno v:
In Materials Science in Semiconductor Processing 15 June 2020 112
Publikováno v:
RSC advances. 13(1)
A facile synthesis of isocyanate free polyurethanes (PU) was executed by the reaction of biodegradable cyclic carbonate and sustainable diamines generated
Autor:
Senthil A. Gurusamy Thangavelu, Ananthan Alagumalai, Ananthanarayanan Krishnamoorthy, Dinesh Kumar Chelike, V R Muthukumar
Publikováno v:
New Journal of Chemistry. 44:13401-13414
A novel luminescent hybrid inorganic–organic molecular assembly was synthesised by the condensation of hexakis cyclotriphosphazene hydrazide (CTP-Hyd) with six units of 10-octyl-10H-phenothiazine-3-carbaldehyde (R-PTZ-CHO) for the first time. In pa
Publikováno v:
Asian Journal of Chemistry. 31:891-895
Considering the good corrosion resistance of Zn-Ni alloy, it is selected in the present study to be the protective coating on mild steel and it is considered as a strong candidate for the replacement of environmentally hazardous cadmium. Zn-Ni alloy
Autor:
Ananthan Alagumalai, Senthil A. Gurusamy-Thangavelu, Sellamuthu N. Jaisankar, Moumita Mukherjee, Bhabendra Nath Das, Dinesh Kumar Chelike, Asit Baran Mandal
Publikováno v:
Applied Surface Science. 499:143966
Biodegradable trifunctional polyol, polycaprolactone triol (PCL) has been chosen as major component (~77 wt%) to develop polyurethane (PU) foam with promising physicochemical and mechanical properties upon optimization of essential components such as
Autor:
Senthil A. Gurusamy Thangavelu, Joydev Acharya, Vadapalli Chandrasekhar, Dinesh Kumar Chelike, Koustav Sarkar, Ananthan Alagumalai, Pawan Kumar
Publikováno v:
Applied Surface Science. 501:143963
It is our objective to hybridize iron oxide nanoparticles with functional inorganic substrate to afford the potential conjugate nanoparticles for cytotoxicity studies. Magnetic iron oxide nanoparticles (Fe3O4 NPs), tethered with amine functional grou