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Insights from a Bibliometrics-Based Analysis of Publishing and Research Trends on Cerium Oxide from 1990 to 2020. | LitMetric

AI Article Synopsis

  • The study analyzes research trends on cerium oxide from 1990 to 2020, focusing on its applications in industrial, environmental, and biomedical fields.
  • Various software tools were utilized to evaluate over 17,000 publications, identifying four key themes spanning different time periods: doping additives, catalysts, reactive oxygen species, and pathology.
  • Despite extensive research showing cerium oxide's versatility and potential benefits, particularly in treating human health issues like Alzheimer's, there are still significant gaps in understanding its therapeutic effects.

Article Abstract

The purpose of this study is to evaluate the literature for research trends on cerium oxide from 1990 to 2020 and identify gaps in knowledge in the emerging application(s) of CeONP. Bibliometric methods were used to identify themes in database searches from PubMed, Scopus and Web of Science Core Collection using SWIFT-Review, VOSviewer and SciMAT software programs. A systematic review was completed on published cerium oxide literature extracted from the Scopus database ( = 17,115), identifying themes relevant to its industrial, environmental and biomedical applications. A total of 172 publications were included in the systematic analysis and categorized into four time periods with research themes identified; "doping additives" ( = 5, 1990-1997), "catalysts" ( = 32, 1998-2005), "reactive oxygen species" ( = 66, 2006-2013) and "pathology" ( = 69, 2014-2020). China and the USA showed the highest number of citations and publications for cerium oxide research from 1990 to 2020. Longitudinal analysis showed CeONP has been extensively used for various applications due to its catalytic properties. In conclusion, this study showed the trend in research in CeONP over the past three decades with advancements in nanoparticle engineering like doping, and more recently surface modification or functionalization to further enhanced its antioxidant abilities. As a result of recent nanoparticle engineering developments, research into CeONP biological effects have highlighted its therapeutic potential for a range of human pathologies such as Alzheimer's disease. Whilst research over the past three decades show the versatility of cerium oxide in industrial and environmental applications, there are still research opportunities to investigate the potential beneficial effects of CeONP in its application(s) on human health.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916443PMC
http://dx.doi.org/10.3390/ijms24032048DOI Listing

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