
| Name | Dr. PUSHPANJALI P |
|---|---|
| Designation | Assistant Professor |
| Email – Id | papushpanjali@gmail.com |
| Qualification | M.Sc (Chemistry),Phd |
| No. of Publications | 25 |
| Sl.No | Qualification/Programme | Institution / University | Year of Passed Out /Period |
|---|---|---|---|
| 1 | M.Sc (Industrial Chemistry) | Mangalore University | 2017 |
| 2 | Ph.D | Mangalore University | 2022 |
| Sl. No | Institution name/Employer name | Designation/Department | Period |
| 1 | JSS College of Arts, Commerce and Science, Ooty Road, Mysuru-25 | Assistant Professor | 2025 till date |
|
Sl. No. |
Title |
Name of Journal |
Date of Publication |
Volume No./Issue No./Page No. |
|
1 |
Concurrent electrochemical detection of synthetic dyes indigo carmine, fast sulphon Black F, and tartrazine using a poly(L-Serine) modified carbon nanotube paste electrode |
Journal of Food Measurement and Characterization |
2026 |
31–38 |
|
2 |
Basic Principles of Electrocatalysts |
Advances in Electrochemical Sensor Applications Using Nano-structured Materials |
2025 |
68, 22–37 |
|
3 |
Electrochemical sensing of antibiotic drug amoxicillin in the presence of dopamine at simple and selective carbon paste electrode activated with cetyltrimethylammonium bromide surfactant |
Monatshefte für Chemie - Chemical Monthly |
2022 |
153, 31–38 |
|
4 |
Electrocatalytic Determination of Hydroxychloroquine Using Sodium Dodecyl Sulphate Modified Carbon Nanotube Paste Electrode |
Journal Topics in Catalysis |
2022 |
1-9 |
|
5 |
Voltammetric Analysis of Antihistamine Drug Cetirizine and Paracetamol at poly(ʟ-Leucine) Layered Carbon Nanotube Paste Electrode |
Surfaces and Interfaces |
2021 |
24, 101154 |
|
6 |
Fabrication of poly (ʟ-Aspartic acid) Layer on graphene nanoplatelets paste electrode for riboflavin sensing. |
Materials Chemistry and Physics
|
2021 |
276, 125392 |
|
7 |
A Highly Responsive Voltammetric Methodology for the Sensing of Antihistamine Drug Cetirizine on the Surface of Cetrimonium Bromide Immobilized Multi-Walled Carbon Nanotube Electrode |
Journal of Materials Science: Materials in Electronics |
2021 |
1‒12 |
|
8 |
An Overview of Recent Developments of Carbon Based Sensors for the Analysis of Drug Molecules |
Journal of Electrochemical Science and Engineering |
2021 |
11, 161‒177 |
|
9 |
Electrochemical Analysis of Indigo Carmine in Food and Water Samples using a poly(Glutamic Acid) Layered Multi-Walled Carbon Nanotube Paste Electrode |
Journal of Electronic Materials |
2021 |
50, 1230-1238 |
|
10 |
Poly (ᴅʟ-Valine) Electropolymerized Carbon Nanotube Paste Sensor for Determination of Antihistamine Drug Cetirizine |
Journal of Electrochemical Science and Engineering |
2021 |
11, 27‒38 |
|
11 |
Fabrication, Characterization and Application of poly(Acriflavine) Modified Carbon Nanotube Paste Electrode for the Electrochemical Determination of Catechol |
Handbook of Nanomaterials for Sensing Applications |
2021 |
105‒117 |
|
12 |
Highly Sensitive Platform Utilizing poly(ʟ-Methionine) Layered Carbon Nanotube Paste Sensor for the Determination of Voltaren. |
FlatChem |
2020 |
24, 2452-2627 |
|
13 |
Development of Polymer Modified Electrochemical Sensor for the Determination of Alizarin Carmine in the Presence of Tartrazine |
Electroanalysis |
2020 |
32, 2474‒2480 |
|
14 |
Development of Carbon Nanotube Based Polymer Modified Electrochemical Sensor for the Voltammetric Study of Curcumin |
Materials Research Innovations |
2020 |
1‒9 |
|
15 |
Poly(Niacin) Based Carbon Nanotube Sensor for the Sensitive and Selective Voltammetric Detection of Vanillin with Caffeine |
Analytical and Bioanalytical Electrochemistry |
2020 |
12, 553‒568 |
|
16 |
Fabrication of a Sensitive and Selective Electrochemical Sensing Platform Based on poly-ʟ-Leucine Modified Sensor for Enhanced Voltammetric Determination of Riboflavin |
Journal of Food Measurement and Characterization |
2020 |
14, 3633–3643 |
|
17 |
Polymer Modified Carbon Paste Electrode as a Sensitive Sensor for the Electrochemical Determination of Riboflavin and its Application in Pharmaceutical and Biological Samples |
Analytical and Bioanalytical Chemistry Research |
2020 |
7, 461-472 |
|
18 |
Electrochemical Fabrication of poly(Niacin) Modified Graphite Paste Electrode and its Application for the Detection of Riboflavin |
The Open Chemical Engineering Journal |
2020 |
14, 90-98 |
|
19 |
Electroanalytical Determination of Tinidazole by Using Surface Modified Carbon Nano Composite Based Sensor |
Materials Research Innovations |
2020 |
1‒10 |
|
20 |
Electroanalytical Determination of Tinidazole by Using Surface Modified Carbon Nano Composite Based Sensor |
Materials Research Innovations |
2020 |
1‒10 |
|
21 |
The Electrochemical Resolution of Ciprofloxacin, Riboflavin and Estriol using Anionic Surfactant and Polymer Modified Carbon Paste Electrode. |
ChemistrySelect |
2019 |
46, 13427‒13433 |
|
22 |
A Sensitive Novel Approach towards the Detection of 8-Hydroxyquinoline at Anionic Surfactant Modified Carbon Nanotube Based Biosensor: A Voltammetric Study |
Physical Chemistry Research |
2019 |
7, 813‒822 |
|
23 |
Electroanalysis of Sodium Alizarin Sulfonate at Surfactant Modified Carbon Nanotube Paste Electrode: A Cyclic Voltammetric Study |
Journal of Materials and Environmental Science |
2019 |
10, 939‒947 |
|
24 |
Determination of Indigo Carmine at poly(Adenine) Modified Carbon Nanotube Paste Electrode |
Research Journal of Life Sciences, Bioinformatics, Pharmaceutical and Chemical Sciences |
2019 |
5, 820‒832 |
|
25 |
Electrochemical Sensor for the Determination of Alizarin Red S at Non-ionic Surfactant Modified Carbon Nanotube Paste Electrode |
Physical Chemistry Research |
2019 |
7, 523‒533 |
|
Sl. No. |
Title |
Guide name |
University |
Year |
Status |
|
1 |
An Electrochemical Approach Towards The Development Of Chemically Modified Electrodes For The Determination Of Bioactive Molecules |
Dr. J G Manjunatha |
Mangalore University |
2022 |
Completed |