Insights in Analytical Electrochemistry Open Access

  • ISSN: 2470-9867
  • Journal h-index: 8
  • Journal CiteScore: 1.52
  • Journal Impact Factor: 1.49
  • Average acceptance to publication time (5-7 days)
  • Average article processing time (30-45 days) Less than 5 volumes 30 days
    8 - 9 volumes 40 days
    10 and more volumes 45 days

Articles published in Insights in Analytical Electrochemistry have been cited by esteemed scholars and scientists all around the world. Insights in Analytical Electrochemistry has got h-index 8, which means every article in Insights in Analytical Electrochemistry has got 8 average citations.

Following are the list of articles that have cited the articles published in Insights in Analytical Electrochemistry.

  2022 2021 2020 2019 2018 2017

Year wise published articles

30 26 46 11 7 4

Year wise citations received

30 19 33 43 50 46
Journal total citations count 274
Journal impact factor 1.49
Journal 5 years impact factor 1.87
Journal cite score 1.52
Journal h-index 8
Journal Impact Factor 2020 formula
IF= Citations(y)/{Publications(y-1)+ Publications(y-2)} Y= Year
Journal 5-year Impact Factor 2020 formula
Citations(2016 + 2017 + 2018 + 2019 + 2020)/
{Published articles(2016 + 2017 + 2018 + 2019 + 2020)}
Journal citescore
Citescorey = Citationsy + Citationsy-1 + Citationsy-2 + Citations y-3 / Published articlesy + Published articlesy-1 + Published articlesy-2 + Published articles y-3
Important citations
Heidari A, Gobato R (2018) A Novel Approach to Reduce Toxicities and to Improve Bioavailabilities of DNA/RNA of Human Cancer Cells–Containing Cocaine (Coke), Lysergide (Lysergic Acid Diethyl Amide or LSD), Δ⁹–Tetrahydrocannabinol (THC)[(–)–trans–Δ⁹–Tetrahydrocannabinol], Theobromine (Xantheose), Caffeine, Aspartame (APM)(NutraSweet) and Zidovudine (ZDV)[Azidothymidine (AZT)] as Anti–Cancer Nano Drugs by Coassembly of Dual Anti–Cancer Nano Drugs to Inhibit DNA/RNA of Human Cancer Cells Drug Resistance. Parana Journal of Science and Education. 4(6):1-7.
Heidari A(2018) Vibrational biospectroscopic studies on anti-cancer nanopharmaceuticals (Part II). MALAYSIAN JOURNAL OF CHEMISTRY (MJChem). 20(1):74-117.
Heidari A, Gobato R (2018)Ultraviolet Photoelectron Spectroscopy (UPS) and Ultraviolet–Visible (UV–Vis) Spectroscopy Comparative Study on Malignant and Benign Human Cancer Cells and Tissues with the Passage of Time under Synchrotron Radiation. Parana Journal of Science and Education. 4(6):18-33
Heidari A, Esposito J, Caissutti A (2019) Study of anti-cancer properties of thin layers of Cadmium Oxide (CdO) nanostructure. International Journal of Analytical and Bioanalytical Methods. 1(1).
Heidari A, Esposito J, Caissutti A (2019) The Importance of Attenuated Total Reflectance Fourier Transform Infrared (ATR–FTIR) and Raman Bio-spectroscopy of Single–Walled Carbon Nanotubes (SWCNT) and Multi–Walled Carbon Nanotubes (MWCNT) in Interpreting Infrared and Raman Spectra of Human Cancer Cells, Tissues and Tumors. Oncogen Journal. 2(2):7.
Heidari A (2018) X–Ray Diffraction (XRD), Powder X–Ray Diffraction (PXRD) and Energy–Dispersive X–Ray Diffraction (EDXRD) Comparative Study on Malignant and Benign Human Cancer Cells and Tissues under Synchrotron Radiation. J Oncol Res. 2(1):1-4.
Gobato R, Heidari A (2018) Molecular Mechanics and Quantum Chemical Study on Sites of Action of Sanguinarine Using Vibrational Spectroscopy Based on Molecular Mechanics and Quantum Chemical Calculations. MALAYSIAN JOURNAL OF CHEMISTRY (MJChem). 20(1):1-23.
Heidari A (2018) Vibrational Decihertz (dHz), Centihertz (cHz), Millihertz (mHz), Microhertz (μHz), Nanohertz (nHz), Picohertz (pHz), Femtohertz (fHz), Attohertz (aHz), Zeptohertz (zHz) and Yoctohertz (yHz) . Imaging and Spectroscopy Comparative Study on Malignant and Benign Human Cancer Cells and Tissues under Synchrotron Radiation. International Journal of Biomedicine. 7(4):335-40.
Heidari A (2017) Active Targeted Nanoparticles for Anti–Cancer Nano Drugs Delivery across the Blood–Brain Barrier for Human Brain Cancer Treatment. J Med Chem Toxicol. 2(3):1-5.
Heidari A, Gobato R (2019) Pros and cons controversy on malignant human cancer cells, tissues and tumors transformation process to benign human cancer cells, tissues and tumors. Trends in Res. 2(1):1-8.
Heidari A, Gobato R (2019). Investigation of energy production by synchrotron, synchrocyclotron and LASER radiations in human cancer cells, tissues and tumors and evaluation of their effective on human cancer cells, tissues and tumors treatment trend. Trends in Res. 2(1):1-8.
Heidari A, Gobato R (2019) Assessing the variety of synchrotron, synchrocyclotron and laser radiations and their roles and applications in human cancer cells, tissues and tumors diagnosis and treatment. Trends in Res.2(1):1-8.
Heidari A(2017)  Integrative approach to biological networks for emerging roles of proteomics, genomics and transcriptomics in the discovery and validation of human colorectal cancer biomarkers from DNA/RNA sequencing data under synchrotron radiation. Transcriptomics. 5(e117):10.
Heidari A(2017) Design of Targeted Metal Chelation Therapeutics Nanocap-sules as Colloidal Carriers and Blood–Brain Barrier (BBB) Translocation to Targeted Deliver Anti–Cancer Nano Drugs into the Human Brain to Treat Alzheimer’s Disease under Synchrotron Radiation.J Nanotechnol Material Sci 4 (2): 62-66
Heidari A (2018) Hadron spectroscopy, baryon spectroscopy and meson spectroscopy comparative study on malignant and benign human cancer cells and tissues under synchrotron radiation. Integr Mol Med.5(5):1-8.
Heidari A, Gobato R(2019) High–resolution mapping of DNA/RNA hypermethylation and hypomethylation process in human cancer cells, tissues and tumors under synchrotron radiation. Trends in Res .2(2):1-9.
Heidari A (2018) human malignant and benign human cancer cells and tissues biospectroscopic analysis under synchrotron radiation using anti–cancer nano drugs delivery. Integr Mol Med. 5(5):1-3.
Heidari A (2018)Enhancing the Raman scattering for diagnosis and treatment of human cancer cells, tissues and tumors using cadmium oxide (CdO) nanoparticles. J Toxicol Risk Assess. 4(1):012-25.
Gobato R, Gobato MR, Heidari A (2019) Raman spectroscopy study of the nano molecule C 13 H 20 BeLi 2 SeSi using Ab initio and Hartree-Fock Methods in the Basis Set CC-pVTZ and 6-311G**(3df, 3pd). International Journal of Advanced Engineering and Science. 8(1):14-35.
Heidari A (2018) Curious Chloride (CmCl3) and Titanic Chloride (TiCl4)–Enhanced Precatalyst Preparation Stabilization and Initiation (EPPSI) Nano Molecules for Cancer Treatment and Cellular Therapeutics. J. Cancer research and therapeutic Interventions. 10:2640-1053.