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Chemosphere
JournalCitation impact & published research
Chemosphere is a journal indexed in ScholarIQ from OpenAlex. ScholarIQ records 51,211 works, 2,410,525 citations, an h-index of 383 and an APC (USD) of 3,610.
51,211
Works
2,410,525
Citations
383
h-index
3,610
APC (USD)
IDs:OpenAlex
What are the most-cited papers on Chemosphere?
ScholarIQmost cited works
Polystyrene nanoplastics penetrate across the blood-brain barrier and induce activation of microglia in the brain of mice
Shan Shan, Yifan Zhang, Huiwen Zhao, Tao Zeng, Xiulan Zhao
Chemosphere. 2022485 Citations
Determination of selected pharmaceuticals and caffeine in sewage and seawater from Tromsø/Norway with emphasis on ibuprofen and its metabolites
Stefan Weigel, Urs Berger, Einar Jensen, Roland Kallenborn, Hilde Thoresen, Heinrich Hühnerfuß
Chemosphere. 2004466 Citations
Human exposure to neonicotinoid insecticides and the evaluation of their potential toxicity: An overview
Wenchao Han, Ying Tian, Xiaoming Shen
Chemosphere. 2017461 Citations
Micro(nano)plastics pollution and human health: How plastics can induce carcinogenesis to humans?
Rakesh Kumar, Camelia Manna, Shaveta Padha, Anurag Verma, Prabhakar Sharma, Anjali Dhar, Ashok Ghosh, Prosun Bhattacharya
Chemosphere. 2022401 Citations
Detoxification of azo dyes in the context of environmental processes
Deepak Rawat, Vandana Mishra, Radhey Shyam Sharma
Chemosphere. 2016361 Citations
Related on ScholarIQ
Polystyrene nanoplastics penetrate across the blood-brain barrier and induce activation of microglia in the brain of mice
Paper
Determination of selected pharmaceuticals and caffeine in sewage and seawater from Tromsø/Norway with emphasis on ibuprofen and its metabolites
Paper
Human exposure to neonicotinoid insecticides and the evaluation of their potential toxicity: An overview
Paper
Micro(nano)plastics pollution and human health: How plastics can induce carcinogenesis to humans?
Paper
Detoxification of azo dyes in the context of environmental processes
Paper
Aging of microplastics increases their adsorption affinity towards organic contaminants
Paper