1 |
Detection of glucose and related analytes by biosensors: A fractal analysis Doke AM, Sadana A Biotechnology Progress, 22(1), 14, 2006 |
2 |
In situ Raman studies on lithiated single-wall carbon nanotubes in liquid ammonia Gu ZN, Liang F, Chen ZY, Sadana A, Kittrell C, Billups WE, Hauge RH, Smalley RE Chemical Physics Letters, 410(4-6), 467, 2005 |
3 |
A fractal analysis of analyte-estrogen receptor binding and dissociation kinetics using biosensors: environmental effects Butala HD, Sadana A Journal of Colloid and Interface Science, 263(2), 420, 2003 |
4 |
A fractal analysis approach for the evaluation of hybridization kinetics in biosensors Sadana A, Ramakrishnan A Journal of Colloid and Interface Science, 234(1), 9, 2001 |
5 |
An evaluation of cellular analyte-receptor binding kinetics utilizing biosensors: A fractal analysis Ramakrishnan A, Sadana A Journal of Colloid and Interface Science, 224(2), 219, 2000 |
6 |
A predictive approach using fractal analysis for analyte-receptor binding and dissociation kinetics for surface plasmon resonance biosensor applications Ramakrishnan A, Sadana A Journal of Colloid and Interface Science, 229(2), 628, 2000 |
7 |
Analyte-receptor binding kinetics for different types of biosensors - A fractal analysis Ramakrishnan A, Sadana A Applied Biochemistry and Biotechnology, 81(3), 161, 1999 |
8 |
A single and a dual-fractal analysis of analyte-receptor binding kinetics for surface plasmon resonance biosensor applications Ramakrishnan A, Sadana A Journal of Colloid and Interface Science, 213(2), 465, 1999 |
9 |
Analyte-receptor binding kinetics for biosensor applications an analysis of the influence of the fractal dimension on the binding rate coefficient Sadana A Applied Biochemistry and Biotechnology, 73(2-3), 89, 1998 |
10 |
Single- and dual-fractal analysis of hybridization binding kinetics: Biosensor applications Sadana A, Vo-Dinh T Biotechnology Progress, 14(5), 782, 1998 |