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Article detail · 2024 · article

A comparative study of electropolymerization and photopolymerization for the determination of molnupiravir and their application in an electrochemical sensor via computationally designed molecularly imprinted polymers

ISSN0026-3672
YÖKSİS OpenAlex Open access · hybrid SJR Q1 JCR Q1
Year2024
Citations15OpenAlex
Percentile%88.9
FWCI2.331.00 = world average
Scopus (SJR)Q1
WoS (JCR)Q1

Data source split

  • YÖKSİSYÖKSİS article record
  • YÖKSİS venueMicrochimica Acta
  • Catalog match (ISSN)Microchimica Acta
  • OpenAlexOpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex English

Abstract A comparative analysis of molecularly imprinted polymers based on different synthesis techniques was performed for the recognition of molnupiravir (MOL). The polymerizations were performed with 3-thienyl boronic acid (3-TBA) as a functional monomer by electropolymerization (EP) and with guanine methacrylate (GuaM) as a functional monomer by photopolymerization (PP). Morphological and electrochemical characterizations of the developed sensors were investigated to verify the constructed sensors. Moreover, quantum chemical calculations were used to evaluate changes on the electrode surface at the molecular and electronic levels. The dynamic linear range of both designed sensors under optimized experimental conditions was found to be 7.5 × 10−12–2.5 × 10−10 M and 7.5 × 10−13–2.5 × 10−11 M for EP and PP, respectively. The effect of various interfering agents on MOL peak current was assessed for the selectivity of the study. In the presence of 100 times more interfering agents, the RSD and recovery values were determined. The RSD values of GuaM/MOL@MIP/GCE and poly(Py-co-3-PBA)/MOL@MIP/GCE sensors were found to be 1.99% and 1.72%, respectively. Furthermore, the recovery values of the MIP-based sensors were 98.18–102.69% and 98.05–103.72%, respectively. In addition, the relative selectivity coefficient (k′) of the proposed sensor was evaluated, and it exhibited good selectivity for MOL with respect to the NIP sensor. The prepared sensor was successfully applied to determine MOL in commercial serum samples and capsule form. In conclusion, the developed sensors provided excellent reproducibility, repeatability, high sensitivity, and selectivity against the MOL molecule. Graphical Abstract

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Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

15citationsOpenAlex · cited_by_count (cache / database)

14 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. 2025 Construction of selective and susceptible MIP-based electrochemical sensors for the determination of fosamprenavir: A comparative study between photopolymerization and electropolymerization techniqueCitations 12 · OpenAlex
  2. 2024 Construction of selective and susceptible MIP-based electrochemical sensors for the determination of fosamprenavir: A comparative study between photopolymerization and electropolymerization techniqueCitations 12 · OpenAlex
  3. 2025 Applications of antiviral drugs with electrochemical sensorsCitations 4 · OpenAlex
  4. 2024 Sensing of the COVID-19 antiviral molnupiravir in the presence of an anionic surfactant on the surface of a boron-doped diamond electrode in pharmaceutical formulationCitations 4 · OpenAlex
  5. 2025 Hydroxylated-graphitic carbon nitride@graphene oxide composites for sensitive electrochemical determination of COVID-19 drug molnupiravir: Effect of modifier compositionCitations 3 · OpenAlex
  6. 2025 Hydroxylated-graphitic carbon nitride@graphene oxide composites for sensitive electrochemical determination of COVID-19 drug molnupiravir: Effect of modifier compositionCitations 3 · OpenAlex
  7. 2025 Hydroxylated-graphitic carbon nitride@graphene oxide composites for sensitive electrochemical determination of COVID-19 drug molnupiravir: Effect of modifier compositionCitations 3 · OpenAlex
  8. 2025 Carbon nanofiber–enhanced molecular imprinted electrochemical sensor for hypoxanthine detectionCitations 1 · OpenAlex
  9. 2025 Carbon nanofiber–enhanced molecular imprinted electrochemical sensor for hypoxanthine detectionCitations 1 · OpenAlex
  10. 2025 Carbon nanofiber–enhanced molecular imprinted electrochemical sensor for hypoxanthine detectionCitations 1 · OpenAlex

Authors

6
  1. AHMET ÇETİNKAYA 1
  2. MEHMET ALTAY ÜNAL 2
  3. HASAN NAZIR 3
  4. MEHMET EMİN ÇORMAN 4
  5. LOKMAN UZUN 5
  6. SİBEL AYŞIL ÖZKAN ANKARA ÜNİVERSİTESİ 6