A
Ashok M. Raichur
Researcher at Indian Institute of Science
Publications - 156
Citations - 7317
Ashok M. Raichur is an academic researcher from Indian Institute of Science. The author has contributed to research in topics: Silver nanoparticle & Adsorption. The author has an hindex of 39, co-authored 150 publications receiving 5996 citations. Previous affiliations of Ashok M. Raichur include University of South Africa & Max Planck Society.
Papers
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Journal ArticleDOI
Non-covalent functionalization using lithographically patterned polyelectrolyte multilayers for high-density microarrays
Gurusiddappa R. Prashanth,Venkanagouda S. Goudar,Swathi Suran,Ashok M. Raichur,Ashok M. Raichur,Manoj M. Varma +5 more
TL;DR: It is demonstrated that the non-covalent immobilization scheme described here has competitive performance compared to conventional covalent agonistic immobilization schemes described in literature.
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Qualitative toxicity assessment of silver nanoparticles on the fresh water bacterial isolates and consortium at low level of exposure concentration.
Deepak Kumar,Jyoti Kumari,Sunandan Pakrashi,Swayamprava Dalai,Ashok M. Raichur,Ashok M. Raichur,Thotapalli Parvathaleswara Sastry,Asit Baran Mandal,N. Chandrasekaran,Amitava Mukherjee +9 more
TL;DR: No significant ion leaching from the AgNPs was observed at the applied concentration levels signifying the dominant role of the particle size, and size distribution in bacterial toxicity.
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Mechanical and curing behavior of epoxy composites reinforced with polystyrene-graphene oxide (PS-GO) core-shell particles
TL;DR: In this article, the effect of polystyrene-graphene oxide (PS-GO) core-shell nano-particles on the curing of epoxy resin was studied and compared.
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Estimation of surface free energy of pyrites by contact angle measurements
TL;DR: In this paper, the effect of pH on the surface free energy of pyrites from different sources was studied and it was shown that the dispersion surface free energies of various pyrites is independent of pH while acid-base interaction energy is strongly dependent on the pH.
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Flocculation of fine coal using synthetic and biologically derived flocculants
TL;DR: In this paper, a transport model is presented for the time-dependent settling of fine coal using biopolymers and synthetic flocculants, and the experimental results are discussed and a transport system is presented.