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Dr. PUSHPANJALI P

Name Dr. PUSHPANJALI P
Designation Assistant Professor
Email – Id papushpanjali@gmail.com
Qualification M.Sc (Chemistry),Phd
No. of Publications 25
Educational Qualification: 
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
Work Experience: 
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
Publications: 

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

M.Phil / Ph.D Thesis: 

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