Vranješ, Zdravko

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Bibliometric Analysis of Nanostructured Anodes for Electro-Oxidative Wastewater Treatment

Brdarić, Tanja; Aćimović, Danka; Savić Rosić, Branislava; Simić, Marija; Stojanović, Katarina; Vranješ, Zdravko; Vasić Anićijević, Dragana

(2024)

TY  - JOUR
AU  - Brdarić, Tanja
AU  - Aćimović, Danka
AU  - Savić Rosić, Branislava
AU  - Simić, Marija
AU  - Stojanović, Katarina
AU  - Vranješ, Zdravko
AU  - Vasić Anićijević, Dragana
PY  - 2024
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/13295
AB  - Last decade, a growing emphasis on developing sustainable and environmentally friendly technologies for electro-oxidative wastewater treatment has catalyzed innovation and spurred research efforts worldwide. Researchers may explore the use of renewable energy sources to drive electrochemical processes, as well as the development of eco-friendly electrode materials for wastewater treatments. The integration of nanostructured anodes into the electrolytic system for wastewater treatment has led to significant advancements in the removal of pollutants via electro-oxidation. Despite the great number of research articles related to the development and use of nanostructured anodes for electro-oxidative wastewater treatment, to our knowledge, no bibliometric analysis has been published in this domain. Therefore, this work presents a bibliometric study of publications on the designated theme, retrieved from theWeb of Science Core Collection database, which were published over the last decade. The visual and network analysis of co-authorship among authors, organizations, countries, co-citation of authors, citation of documents and sources, as well as the co-occurrence of author keywords was performed using two compatible pieces of scientometric software, namely VOSviewer (version 1.6.18) and CiteSpace (version 6.2.R4). From 2013 to 2023, there has been a gradual increase in the number of publications regarding the development and use of nanostructured anodes for electro-oxidative wastewater treatment. It suggests a steady advancement in this field. The People’s Republic of China emerges as the most productive country, and it is a leader in international collaborations. Also, the United States of America, South Korea, and European Union countries have significant impacts on the research in this domain. The development and application of nanostructured materials for urea electro-oxidation is a main and prospective research theme. This bibliometric analysis allowed for the visualization of the present landscape and upcoming trends in this research field, thereby facilitating future collaborative research endeavors and knowledge exchange.
T2  - Sustainability
T1  - Bibliometric Analysis of Nanostructured Anodes for Electro-Oxidative Wastewater Treatment
VL  - 16
IS  - 10
SP  - 3982
DO  - 10.3390/su16103982
ER  - 
@article{
author = "Brdarić, Tanja and Aćimović, Danka and Savić Rosić, Branislava and Simić, Marija and Stojanović, Katarina and Vranješ, Zdravko and Vasić Anićijević, Dragana",
year = "2024",
abstract = "Last decade, a growing emphasis on developing sustainable and environmentally friendly technologies for electro-oxidative wastewater treatment has catalyzed innovation and spurred research efforts worldwide. Researchers may explore the use of renewable energy sources to drive electrochemical processes, as well as the development of eco-friendly electrode materials for wastewater treatments. The integration of nanostructured anodes into the electrolytic system for wastewater treatment has led to significant advancements in the removal of pollutants via electro-oxidation. Despite the great number of research articles related to the development and use of nanostructured anodes for electro-oxidative wastewater treatment, to our knowledge, no bibliometric analysis has been published in this domain. Therefore, this work presents a bibliometric study of publications on the designated theme, retrieved from theWeb of Science Core Collection database, which were published over the last decade. The visual and network analysis of co-authorship among authors, organizations, countries, co-citation of authors, citation of documents and sources, as well as the co-occurrence of author keywords was performed using two compatible pieces of scientometric software, namely VOSviewer (version 1.6.18) and CiteSpace (version 6.2.R4). From 2013 to 2023, there has been a gradual increase in the number of publications regarding the development and use of nanostructured anodes for electro-oxidative wastewater treatment. It suggests a steady advancement in this field. The People’s Republic of China emerges as the most productive country, and it is a leader in international collaborations. Also, the United States of America, South Korea, and European Union countries have significant impacts on the research in this domain. The development and application of nanostructured materials for urea electro-oxidation is a main and prospective research theme. This bibliometric analysis allowed for the visualization of the present landscape and upcoming trends in this research field, thereby facilitating future collaborative research endeavors and knowledge exchange.",
journal = "Sustainability",
title = "Bibliometric Analysis of Nanostructured Anodes for Electro-Oxidative Wastewater Treatment",
volume = "16",
number = "10",
pages = "3982",
doi = "10.3390/su16103982"
}
Brdarić, T., Aćimović, D., Savić Rosić, B., Simić, M., Stojanović, K., Vranješ, Z.,& Vasić Anićijević, D.. (2024). Bibliometric Analysis of Nanostructured Anodes for Electro-Oxidative Wastewater Treatment. in Sustainability, 16(10), 3982.
https://doi.org/10.3390/su16103982
Brdarić T, Aćimović D, Savić Rosić B, Simić M, Stojanović K, Vranješ Z, Vasić Anićijević D. Bibliometric Analysis of Nanostructured Anodes for Electro-Oxidative Wastewater Treatment. in Sustainability. 2024;16(10):3982.
doi:10.3390/su16103982 .
Brdarić, Tanja, Aćimović, Danka, Savić Rosić, Branislava, Simić, Marija, Stojanović, Katarina, Vranješ, Zdravko, Vasić Anićijević, Dragana, "Bibliometric Analysis of Nanostructured Anodes for Electro-Oxidative Wastewater Treatment" in Sustainability, 16, no. 10 (2024):3982,
https://doi.org/10.3390/su16103982 . .