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Chemical Sciences Journal

ISSN: 2150-3494

Open Access

Citations Report

Chemical Sciences Journal : Citations & Metrics Report

Articles published in Chemical Sciences Journal have been cited by esteemed scholars and scientists all around the world.

Chemical Sciences Journal has got h-index 17, which means every article in Chemical Sciences Journal has got 17 average citations.

Following are the list of articles that have cited the articles published in Chemical Sciences Journal.

  2022 2021 2020 2019 2018

Year wise published articles

70 64 23 15 20

Year wise citations received

149 114 119 131 114
Journal total citations count 912
Journal impact factor 1.75
Journal 5 years impact factor 3.45
Journal cite score 3.17
Journal h-index 17
Journal h-index since 2018 12
Important citations

Park JY, Nam B, Choi SA, Oh YK, Lee JS (2014) Effects of anionic surfactant on extraction of free fatty acid from Chlorella vulgaris. Bioresource technology, 166: 620-624.

Azhim A, Syazwani N, Morimoto Y, Furukawa KS, Ushida T (2014) The use of sonication treatment to decellularize aortic tissues for preparation of bioscaffolds. Journal of biomaterials applications 29: 130-141.

Vasyuk S (2016) Development spectrophotometric method of assay Medicinal substances containing secondary aliphatic amino group. Zaporozhye State Medical University, Ukraine.

Prashanth K N (2015) Analytical studies on some Anti Migraine Drugs. University of Mysore, Mysore.

Abraham Ac, Molly Mkaa (2013) Premna Serratifolia L, A Potent Antioxidant and Anti-Inflammatory of Kerala. In 23rd Swadeshi Science Congress, Kerala.

Khan H (2017) Anti-inflammatory potential of alkaloids as a promising therapeutic modality. Letters in Drug Design & Discovery 14: 240-249.

Neto WS (2014) Synthesis and Characterization of Polyanylin Doped with Oleic Acid and Preparation of Hybrids with Cobalt Ferrets for Photo degradation Application. Universidade Estadual De Goiás, Brazil.

MgAl DL, Estrada EMA, Murillo RA, Acatitla GJ, En CD  (2016) Photodegradation of Naproxene Sodium and Oxyetracycline in Aquatic Medium Employing as Photocatalyzers Mixed Oxides Derived From Hydroxides. Universidad Autónoma Metropolitana, Mexico.  

Cai Pei Yi (2015) Combining Modified Nano-TiO2 Photocatalysts with Ozone Technology for Decomposition of Indoor Formaldehyde. Institute of Environmental Engineering, Sun Yat - sen University, China, pp: 125.

Yetim T, Tekin T (2016) A Kinetic Study on Photocatalytic and Sonophotocatalytic Degradation of Textile Dyes. Periodica Polytechnica Chemical Engineering 6: 102-108.

Yilleng M T (2014) Strategis to the photochemical oxidation of phenol contaminated waste water using titanium (iv) oxide-base catalyst. Ahmadu Bello University, Zaria, Nigeria.

Golshan M, Zare M, Goudarzi G, Abtahi M, Babaei AA (2017) Fe 3 O 4@ HAP-enhanced photocatalytic degradation of Acid Red73 in aqueous suspension: optimization, kinetic, and mechanism studies. Materials Research Bulletin 6: 156-168.

Eesa MT, Juda AM, Ahmed LM (2016) Kinetic and Thermodynamic Study of the Photocatalytic Decolourization of Light Green SF Yellowish (Acid Green 5) Dye using Commercial Bulk Titania and Commercial Nanotitania. International Journal of Science and Research 5: 1495-1500.

Rogozea EA, Petcu AR, Olteanu NL, Lazar CA, Cadar D, et al. (2017) Tandem adsorption-photodegradation activity induced by light on NiO-ZnO p–n couple modified silica nanomaterials. Materials Science in Semiconductor Processing 57: 1-11.

Khezrianjoo S, Revanasiddappa HD (2016) Effect of operational parameters and kinetic study on the photocatalytic degradation of m-cresol purple using irradiated ZnO in aqueous medium. Water Quality Research Journal of Canada 51: 69-78.

Camera-Roda G, Loddo V, Palmisano L, Parrino F (2017) Guidelines for the assessment of the rate law of slurry photocatalytic reactions. Catalysis Today 281: 221-230.

Liang CJ, Fang JW (2016) Predicting the kinetics of catalytic oxidation of multicomponent organic waste gases. Chemical Engineering Science 144: 101-107.

Ramos AM (2014) Non chemical natural organic matter removal with a contact TiO2 process.Universidade do Algarve,Portugal.

Rani GJ, Rajan MJ (2017) Reduced graphene oxide/ZnFe2O4 nanocomposite as an efficient catalyst for the photocatalytic degradation of methylene blue dye. Research on Chemical Intermediates 1: 22.

Cano-Guzmán CF, Pérez-Orozco JP, Hernández-Pérez I, González-Reyes L, Garibay-Febles V (2014) Kinetic Study for Reactive Red 84 Photo Degradation Using Iron (III) Oxide Nanoparticles in annular reactor. Journal of Textile Science & Engineering 4:1.

Relevant Topics

Google Scholar citation report
Citations: 912

Chemical Sciences Journal received 912 citations as per Google Scholar report

Chemical Sciences Journal peer review process verified at publons

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