Journal of Molecular Biology and Biotechnology : Citations & Metrics Report

Articles published in Journal of Molecular Biology and Biotechnology have been cited by esteemed scholars and scientists all around the world. Journal of Molecular Biology and Biotechnology has got h-index 7, which means every article in Journal of Molecular Biology and Biotechnology has got 7 average citations.

Following are the list of articles that have cited the articles published in Journal of Molecular Biology and Biotechnology.

  2023 2022 2021 2020 2019

Total published articles

2 27 41 22 15

Conference proceedings

0 0 0 0 0

Citations received as per Google Scholar, other indexing platforms and portals

1 15 32 22 15
Journal total citations count 173
Journal impact factor 1.40
Journal 5 years impact factor 1.51
Journal cite score 1.50
Journal h-index 7
Journal h-index since 2019 7
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Angelic Acid, Diabolic Acids, Draculin and Miraculin Nano Molecules Incorporation into the Nano Polymeric Matrix (NPM) by Immersion of the Nano Polymeric Modified Electrode (NPME) as Molecular Enzymes

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Uranocene (U(C8H8)2) and Bis(Cyclooctatetraene)Iron (Fe(C8H8)2 or Fe(COT)2)–Enhanced Precatalyst Preparation Stabilization and Initiation (EPPSI) Nano Molecules

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Vibrational biospectroscopic study and chemical structure analysis of unsaturated polyamides nanoparticles as anti–cancer polymeric nanomedicines using synchrotron radiation

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Pros and cons controversy on malignant human cancer cells, tissues and tumors transformation process to benign human cancer cells, tissues and tumors

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Evaluating the effect of anti–cancer nano drugs dosage and reduced leukemia and polycythemia vera levels on trend of the human blood and bone marrow cancers under synchrotron radiation

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Assessing the variety of synchrotron, synchrocyclotron and laser radiations and their roles and applications in human cancer cells, tissues and tumors diagnosis and treatment

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High–resolution mapping of DNA/RNA hypermethylation and hypomethylation process in human cancer cells, tissues and tumors under synchrotron radiation

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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

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A hypertension approach to thermal infrared spectroscopy and photothermal infrared spectroscopy comparative study on malignant and benign human cancer cells and tissues under synchrotron radiation with the passage of time

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Human malignant and benign human cancer cells and tissues biospectroscopic analysis under synchrotron radiation using anti-cancer nano drugs delivery

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Hadron spectroscopy, baryon spectroscopy and meson spectroscopy comparative study on malignant and benign human cancer cells and tissues under synchrotron radiation

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FT–raman spectroscopy, coherent anti–stokes raman spectroscopy (CARS) and raman optical activity spectroscopy (ROAS) comparative study on malignant and benign human cancer cells and tissues with the passage of time under synchrotron radiation

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Vibrational biospectroscopic study of ginormous virus– sized macromolecule and polypeptide macromolecule as mega macromolecules using attenuated total reflectance– fourier transform infrared (ATR–FTIR) spectroscopy and mathematica 11.3

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he Importance of Attenuated Total Reflectance Fourier Transform Infrared (ATR–FTIR) and Raman Biospectroscopy 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

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The Quantum Entanglement Dynamics Induced by Non-Linear Interaction between a Moving Nano Molecule and a Two-Mode Field with Two-Photon Transitions Using Reduced Von Neumann Entropy and Jaynes-Cummings Model for Human Cancer Cells, Tissues and Tumors Diagnosis

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A combined experimental and computational study on the catalytic effect of aluminum nitride nanocrystal (AlN) on the polymerization of benzene, naphthalene, anthracene, phenanthrene, chrysene and tetracene

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The hydrolysis constants of copper (I) (Cu+) and copper (II) (Cu2+) in aqueous solution as a function of pH using a combination of pH measurement and biospectroscopic methods and techniques

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Novel experimental and three–dimensional (3D) multiphysics computational framework of michaelis– menten kinetics for catalyst processes innovation, characterization and carrier applications

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The hydrolysis constants of copper (I) (Cu+) and copper (II) (Cu2+) in aqueous solution as a function of pH using a combination of pH measurement and biospectroscopic methods and techniques

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Novel experimental and three–dimensional (3D) multiphysics computational framework of michaelis– menten kinetics for catalyst processes innovation, characterization and carrier applications

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