DEPARTMENT.FACULTY

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Dr. (Ms.) Anamika Gupta
  • DEPARTMENT_STAFF.QUALIFICATION

    Ph.D

  • DEPARTMENT_STAFF.DESIGNATION

    Associate Professor

  • DEPARTMENT_STAFF.THRUST_AREA

    Synthetic Organic Chemistry, Photochemistry. Photoredox Catalysis.

  • DEPARTMENT_STAFF.ADDRESS

    D/O Chemistry,AMU.,Aligarh.202002 (U.P.), India

  • DEPARTMENT_STAFF.MOBILE

    9058970731

  • DEPARTMENT_STAFF.EMAIL

    anamikaguptaamu@gmail.com, anamika.ch@amu.ac.in

  • DEPARTMENT_STAFF.TIME_TABLE

    Time TableTime Table 2021-2022Time Table 2020-2021 (Spring Semester)

DEPARTMENT_STAFF.COMPLETE_CV

At present, I am working as an Associate Professor in the Department of Chemistry at AMU., Aligarh. I obtained my Ph.D. in Chemistry from Aligarh Muslim University in 2006.

My teaching assignments and interests include Undergraduate and Post-Graduate courses on General Organic Chemistry, Environmental Chemistry, and advanced courses on Designing of Organic Synthesis by Disconnection Approach, Organic Name Reactions and Molecular Rearrangements and Photochemistry.


I pursued my research in the areas of Synthetic Organic Chemistry and Photochemistry with special emphasis on the photochemical studies on drug molecules. The purpose of this research was to apply the principles of synthetic organic photochemistry to solve the problems of drug photochemistry and photobiology. This research focuses  on the photodegradation mechanisms of photosensitizing drugs to identify the photochemical reactions and molecular mechanisms involved in the drug-induced photosensitization, ensuing phototoxicity, photoallergy, and photomutagenesis. The outcome of these researches is a contribution in part to the contemporary problems of modern photobiology. My current Research  is based on developing new sustainable methods for synthesis.

I have published a number of research articles in peer-reviewed journals of reputed Publishing houses such as the American Chemical Society, Taylor & Francis, Wiley, Springer, 

Elsevier, Govi-Verlag Germany, the Slovenian Chemical Society, Arakat USA, and the Chemical and Pharmaceutical Bulletin (Japan) 
and presented papers at various conferences (both National and International).  

  1. Publications 2021-2023

    1. Electron-Transfer Mediated Photodegradation of Phototoxic Antipsychotic Drug Quetiapine., Anamika Gupta, Yogesh Kumar, Mohd. Rehan Zaheer, Roohi, Jawaid Iqbal (2021) ACS Omega, 6, 30834?30840 (ISSN:2470-1343) IF: 4.132

    2. Photodegradation and In Silico Molecular Docking Study of a Diuretic Drug: Clopamide. Anamika Gupta, Mohd. Rehan Zaheer, Safia Iqbal, Roohi, Mohd. Akil Ahmad, Mohammed B Alshammari (2022). ACS Omega, 7,16,13670-13877 (ISSN:
      2470-1343) IF: 4.132

    3. Isolation and optimization of extracellular PHB depolymerase producer Aeromonas caviae Kuk1-(34) for sustainable solid waste management of biodegradable polymers.Mohammad Amir, Naushin Bano, Abu Baker, Qamar Zia, Saeed Banawas, Mohd. Rehan Zaheer, Mohammad Shariq, Md Sarfaraz Nawaz, Mohd. Farhan Khan, Z. R. Azaz Ahmad Azad, Anamika Gupta, Roohi (2022). Plos One, 17(4): e0264207(ISSN:1932-6203) IF: 3.24

    4. Visible Light Promoted Green and Sustainable approach for One-pot Synthesis of 4,4'-(arylmethylene)bis(1H-pyrazol-5-ols), In-vitro Anticancer activity and Molecular docking with Covid-19 Mpro”. Anamika Gupta, Safia Iqbal, Roohi, Mohd. Kamil Hussain, Mohd. Rehan Zaheer and  Krapa Shankar (2022)ACS Omega, 7, 38, 34583?34598 (ISSN:2470-1343) IF: 4.132

      1. Visible Light Promoted Catalyst free (VLCF) Multi-component Synthesis of Spiro Indolo-quinazolinone-pyrrolo[3,4-a]pyrrolizine Hybrids: Evaluation of In vitro Anticancer Activity, Molecular Docking, MD simulation and DFT Studies. Safia Iqbal, Roohi, Mohd. Kamil Hussain, Mohd. Rehan Zaheer,  Krapa Shankar and Anamika Gupta* (2023), Journal of Biomolecular Structure & Dynamics. doi.org/10.1080/07391102.2023.2214229.

      2. Visible Light-Promoted Catalyst-Free (VLCF) Scalable Synthesis of Novel Derivatives of Isoniazid and Maleimide, ChemistrySelect, DOI: 10.1002/slct.202303606 (2023),