APID Academic Profile Identity
K.S.V. Krishna Rao

Prof. Dr. K.S.V. Krishna Rao

Professor · Department of Chemistry
Author
APID
8243
ORCID
0000-0001-7410-2024
Scopus
H-3971-2019
Google Scholar
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Location
KADAPA, ANDHRA PRADESH, India
Expertise
CHEMISTRY, Physical Chemistry, Polymer Chemistry
Areas of interest
Hydrogels, Drug Delivery, Biomaterials, Membranes, Nanomedicine,
Member since
September 2024

Biography

Dr. K.S.V. Krishna Rao is a Professor at Department of Chemistry, Yogi Vemana University, India. He received his M.Sc. in Chemistry in 2002 and obtained his Ph. D. in Chemistry in 2005 from the Sri Krishnadevaraya University, Anantapuramu, India. He was the recipient of Junior Scientist award (2007) from NESA, India; Young Scientist award (2009) from DST, India; RAMAN Postdoctoral Fellowship award (2014) from UGC, India; Associate Fellow Award (2018) Andhra Pradesh Akademi of Sciences. He has held Postdoctoral Fellow Positions in South Korea (2006-2008) and USA (2015-2016). He has of 150 research articles, articles in research area that are published in ACS, Elsevier, Springer, Taylor & Francis etc., and presented 75 papers at International and national conferences/seminars. Under his supervision, 8 students were awarded and four are pursuing Ph.D. He has also conducted national and international conferences, workshops and seminars.

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Publications

  1. Benchmarking recent advances in hydrogen production using g-C3N4-based photocatalysts
  2. Bioactive phosphate cross-linked guar gum-based hydrogels with enhanced mineralization ability for application in bone tissue engineering.
  3. CD-44 active cystamine-bridged hyaluronic acid-polydopamine nanoparticles for chemo-photothermal cancer therapy
  4. Fabrication of Polyelectrolyte Membranes of Pectin Graft-Copolymers with PVA and Their Composites with Phosphomolybdic Acid for Drug Delivery, Toxic Metal Ion Removal, and Fuel Cell Applications
  5. ROS-generating, pH-responsive and highly tunable reduced graphene oxide-embedded microbeads showing intrinsic anticancer properties and multi-drug co-delivery capacity for combination cancer therapy,
  6. Surface Modified Carbon Nanotubes for Bone Tissue Engineering. Surface Modified Carbon Nanotubes