Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Chandrashekhar Sharan"'
Publikováno v:
Analytical Chemistry. 89:13582-13588
Hydrogen sulfide (H2S) is a hazardous gas, which not only harms living beings but also poses a significant risk to damage materials placed in culture and art museums, due to its corrosive nature. We demonstrate a novel approach for selective rapid de
Publikováno v:
RSC Advances. 5:91785-91794
Since the last decade, eco-friendly routes for the synthesis of nanostructured materials of various types and functionalities have been a topic of enormous interest in the field of nanotechnology. The primary work in this field started with the ‘bo
Publikováno v:
RSC Advances. 5:1883-1889
There is a tremendous interest in newly-discovered, green, room-temperature, biological routes for the fabrication of biologically-benign functional nanostructures. The bottom-up biogenic synthesis, where the precursor molecules form crystalline soli
Publikováno v:
Analytical chemistry. 89(24)
Hydrogen sulfide (H
Autor:
Pankaj Poddar, Chandrashekhar Sharan, Anandwardhan A. Hardikar, Amaresh K. Ranjan, Archana Pundle, Umesh Kumar
Publikováno v:
Current Nanoscience. 8:130-140
Publikováno v:
The Journal of Physical Chemistry C. 113:21493-21500
The fate of bioactivity of biomolecules such as enzymes, proteins, and even drug molecules is greatly affected by the conformational changes in the proximity of the solid surfaces. This interaction is the key to the potential of their further applica
Autor:
Nikhilendu Tiwary, Pankaj Poddar, V. Ramgopal Rao, Manoj Kandpal, Vijay Palaparthy, Chandrashekhar Sharan
Publikováno v:
IndraStra Global.
Magnetic nanomaterials' (especially metals) air stability and compatibility with standard micro-fabrication technologies are often a concern for development of MEMS-based magnetic devices. In this paper, we report an air-stable, photo-patternable and
Autor:
Chandrashekhar Sharan, Manoj Kandpal, V. Ramgopal Rao, Kovur Prashanthi, P. R. Apte, Pankaj Poddar
Publikováno v:
Applied Physics Letters. 101:104102
Photo-curable nanocomposite material was formulated by embedding ZnO nanoparticles into a SU-8 matrix and studied for its piezoelectric properties for low cost fabrication of self-powered nanodevices. The piezoelectric coefficient of ZnO nanoparticle