天美传媒

ISSN: 2155-9872

Journal of Analytical & Bioanalytical Techniques
天美传媒 Access

Our Group organises 3000+ Global Events every year across USA, Europe & Asia with support from 1000 more scientific Societies and Publishes 700+ 天美传媒 Access Journals which contains over 50000 eminent personalities, reputed scientists as editorial board members.

天美传媒 Access Journals gaining more Readers and Citations
700 Journals and 15,000,000 Readers Each Journal is getting 25,000+ Readers

This Readership is 10 times more when compared to other Subscription Journals (Source: Google Analytics)
Citations : 6413

Indexed In
  • CAS Source Index (CASSI)
  • Index Copernicus
  • Google Scholar
  • Sherpa Romeo
  • Academic Journals Database
  • 天美传媒 J Gate
  • Genamics JournalSeek
  • JournalTOCs
  • ResearchBible
  • China National Knowledge Infrastructure (CNKI)
  • Ulrich's Periodicals Directory
  • Electronic Journals Library
  • RefSeek
  • Directory of Research Journal Indexing (DRJI)
  • Hamdard University
  • EBSCO A-Z
  • OCLC- WorldCat
  • Scholarsteer
  • SWB online catalog
  • Virtual Library of Biology (vifabio)
  • Publons
  • Euro Pub
  • ICMJE
Share This Page

Fabrication of Novel Nanostructured Pd2+ Doped Tio2 Platform for Detection of Cholesterol

International Conference & Exihibition On Analytical and Bioanalytical Techniques - 2010

Marshal Dhayal, Ravi Ranjan Pandey, Krishan Kumar Saini

ScientificTracks Abstracts: J Anal Bioanal Techniques

DOI:

Abstract
With recent advances in nanotechnology, rapid progress has been made in biosensors based on nanomaterials, however there are still challenges to overcome with practical applicability of such systems. We describe nanomaterial- based biosensors with unique properties, provides a promising platform, which is simple, cost-effective, and requires no external modification to biomolecules. The unique catalytic, amperometric cholesterol biosensors have been developed based on the immobilization of cholesterol oxidase (ChOx) in the nonostructured films of sol茂驴陆gel-derived Pd doped TiO 2 . The presence of Pd in the sol茂驴陆gel-derived TiO 2 onto ITO providing more surface energy as well more surface area which improves the sensitivity and long-term stability of the biosensor. Analytical performance of the cholesterol biosensor based on the Pd doped TiO 2 films is superior to that of the biosensor based on undoped TiO 2 films in terms of response time, sensitivity, and long-term stability. The Pd doped TiO 2 nanostructured platform offer the pathway for direct electron transfer between the electrode surface and the active redox centers of Cholesterol oxidase (ChOx) which enables the biosensor to operate at a low working potential and to avoid the influence of the O 2 presence on the amperometric current response. This work offers a unique platform for development of enzymatic electrochemical biosensors.
Biography
International Conferences 2025-26
 
Meet Inspiring Speakers and Experts at our 3000+ Global

Conferences by Country

Medical & Clinical Conferences

Conferences By Subject

Top