| Literature DB >> 35873047 |
Yitao Sun1, Yinping Bai2, Wenlong Yang1, Kangmin Bu1, Sikander Khan Tanveer3, Jiangbo Hai1.
Abstract
Since the 21st century, natural biopolymers have played an indispensable role in long-term global development strategies, and their research has shown a positive growth trend. However, these substantive scientific results are not conducive to our quick grasp of hotspots and insight into future directions and to understanding which local changes have occurred and which trend areas deserve more attention. Therefore, this study provides a new data-driven bibliometric analysis strategy and framework for mining the core content of massive bibliographic data, based on mathematical models VOS Viewer and CiteSpace software, aiming to understand the research prospects and opportunities of natural biopolymers. The United States is reported to be the most important contributor to research in this field, with numerous publications and active institutions; polymer science is the most popular subject category, but the further emphasis should be placed on interdisciplinary teamwork; mainstream research in this field is divided into five clusters of knowledge structures; since the explosion in the number of articles in 2018, researchers are mainly engaged in three fields: "medical field," "biochemistry field," and "food science fields." Through an in-depth analysis of natural biopolymer research, this article provides a better understanding of trends emerging in the field over the past 22 years and can also serve as a reference for future research.Entities:
Keywords: Citespace; VOS viewer; bibliometric analysis; knowledge mapping; natural biopolymer; quantitative visualization
Year: 2022 PMID: 35873047 PMCID: PMC9302608 DOI: 10.3389/fchem.2022.915648
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.545
FIGURE 1Number of publications and citation frequency from 2000 to 2021.
Article output in 10 subject categories of natural biopolymer research.
| Subject category | 2000–2002 | 2003–2017 | 2018–2021 |
|---|---|---|---|
| Polymer science | 12 | 325 | 428 |
| Chemistry multidisciplinary | 7 | 244 | 267 |
| Biochemistry molecular biology | 13 | 214 | 210 |
| Materials science multidisciplinary | 5 | 202 | 223 |
| Chemistry applied | 2 | 148 | 210 |
| Chemistry physical | 5 | 163 | 152 |
| Food science technology | 2 | 110 | 179 |
| Engineering chemical | 5 | 126 | 117 |
| Materials science biomaterials | 1 | 120 | 115 |
| Biotechnology applied microbiology | 2 | 133 | 94 |
FIGURE 2Visualization of the co-occurring subject categories network. (Nodes represent subject categories. The size of a node is proportional to the literature number of the subject category. The links represent the co-occurring relationship between different subject categories. The color of the rings and links corresponds to the year. The purple rings indicate high centrality.)
Top 10 most productive countries in terms of relevant articles.
| Country | Ps | Percentage (%) | TCa | TC/Pb | H-index |
|---|---|---|---|---|---|
| United States | 602 | 17.17 | 33,188 | 55.13 | 91 |
| China | 538 | 15.34 | 15,962 | 29.67 | 58 |
| India | 432 | 12.32 | 16,896 | 39.11 | 65 |
| Germany | 213 | 6.07 | 10,749 | 50.46 | 49 |
| Iran | 188 | 5.36 | 6,752 | 35.91 | 43 |
| Italy | 186 | 5.30 | 5,811 | 31.24 | 42 |
| France | 172 | 4.90 | 11,161 | 64.89 | 49 |
| Spain | 170 | 4.85 | 8,100 | 47.65 | 43 |
| Brazil | 158 | 4.51 | 4,496 | 28.46 | 30 |
| England | 145 | 4.13 | 7,500 | 51.72 | 42 |
Note: Ps: the total number of articles published. TCa: the total citations for a country. TC/Pb: average number of citations per paper for a country. h-index: according to Hirsch (2005): A scientist has index H if H of his/her Np articles have at least H citations each, and the other Np-H, articles have no more than H citations each, in which Np is the number of articles published during n years. A higher-index indicates greater academic impact.
FIGURE 3Country/region cooperation knowledge graph (frequency ≥1).
FIGURE 4Relational chart of AI and AAI from 2000 to 2021 for 10 countries/regions.
Top 10 most productive institutions in terms of relevant articles.
| Institution | Ps | Percentage (%) | Country | TCa | TC/Pb | H-index |
|---|---|---|---|---|---|---|
| League of European Research Universities LERU | 119 | 3.39 | United Kingdom etc. | 5,214 | 43.82 | 39 |
| Centre National De La Recherche Scientifique CNRS | 101 | 2.88 | France | 5,706 | 56.5 | 32 |
| Chinese Academy of Sciences | 81 | 2.31 | China | 3,043 | 37.57 | 33 |
| Udice French Research Universities | 73 | 2.08 | France | 4,776 | 65.42 | 31 |
| Indian Institute of Technology System Iit System | 66 | 1.88 | India | 2,579 | 39.08 | 27 |
| Consejo Superior de Investigaciones Cientificas CSIC | 58 | 1.65 | China | 3,912 | 67.45 | 26 |
| Russian Academy of Sciences | 54 | 1.54 | Russia | 488 | 9.04 | 13 |
| Council of Scientific Industrial Research CSIR India | 50 | 1.43 | India | 2,491 | 49.82 | 20 |
| Consiglio Nazionale Delle Ricerche CNR | 46 | 1.31 | Italy | 1,354 | 29.43 | 17 |
| Egyptian Knowledge Bank EKB | 46 | 1.31 | Egypt | 1,389 | 30.2 | 16 |
FIGURE 5Knowledge map of cooperation between institutions (frequency ≥5).
Top 10 journals with publication volume.
| Journal | Ps | Percentage (%) | Publisher | Region | Total citation | JCI | If |
|---|---|---|---|---|---|---|---|
| International Journal of Biological Macromolecules | 128 | 3.65 | Elsevier | Netherlands | 79,247 | 1.38 | 6.737 |
| Polymers | 104 | 2.97 | Mdpi | Switzerland | 27,637 | 0.83 | 4.493 |
| Carbohydrate polymers | 99 | 2.82 | Isevier sci itd | England | 104,570 | 1.99 | 8.678 |
| Biopolymers | 69 | 1.97 | Wiley | United States | 9,962 | 0.47 | 2.235 |
| Food hydrocolloids | 55 | 1.57 | Isevier sci itd | United States | 42,938 | 2.15 | 9.169 |
| Journal of Applied Polymer Science | 44 | 1.25 | Wiley | United States | 68,877 | 0.7 | 2.754 |
| Materials | 38 | 1.08 | Mdpi | Switzerland | 52,459 | 0.63 | 3.92 |
| ACS Sustainable Chemistry Engineering | 34 | 0.97 | Amer chemical soc | United States | 62,273 | 1.5 | 8.471 |
| Materials Science Engineering C Materials for Biological Applications | 32 | 0.91 | Elsevier | Netherlands | 50,537 | 1.27 | 6.654 |
| Biomacromolecules | 31 | 0.88 | Amer chemical soc | United States | 45,724 | 1.6 | 6.813 |
Note: JCI: Journal Citation Indicator (The average JCI, in a category is 1. Journals with a JCI, of 1.5 have 50% more citation impact than the average in that category. It may be used alongside other metrics to help you evaluate journals.); IF: 5-years impact factor, impact factor data from the 2020 edition of Journal Citation Reports® in Web of Science.
Top 10 cited articles and journals.
| Title | Journal | Citations | Year | First author |
|---|---|---|---|---|
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| Progress in polymer science | 2,087 | 2012 |
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| Biomacromolecules | 1,742 |
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| Progress in polymer science | 1,510 | 2005 |
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| Journal of Polymers and the Environment | 1,413 | 2002 |
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| Biomacromolecules | 1,165 | 2011 |
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| Applied geochemistry | 1,013 | 2002 |
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| Energy and environmental science | 984 | 2014 |
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| Food hydrocolloids | 973 | 2011 |
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| European polymer journal | 956 | 2011 |
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| Chemical Society Reviews | 927 | 2012 |
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FIGURE 6Keyword co-occurrence and clustering knowledge graph. (A) Based on VOS viewer software (frequency≥ 20). (B) Based on CiteSpace software (top 5 categories). (C) Knowledge structure graph.
Top 25 keywords with strongest citation bursts.
| Keyword | Year | Strength | Begin | End | 2000–2021 |
|---|---|---|---|---|---|
| Dissolution | 2000 | 3.51 | 2017 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃▃▃ |
| Polylactic acid | 2000 | 4.22 | 2018 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃▃ |
| Regeneration | 2000 | 4.15 | 2018 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃▃ |
| Strength | 2000 | 3.94 | 2018 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃▃ |
| Antibacterial | 2000 | 5.81 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Efficient | 2000 | 4.06 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Cassava starch | 2000 | 4.02 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Bioactive compound | 2000 | 3.62 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Thermal stability | 2000 | 3.62 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Pretreatment | 2000 | 3.30 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Chitosan film | 2000 | 3.21 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |
| Nanocrystalline cellulose | 2000 | 3.21 | 2019 | 2021 | ▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▂▃▃▃ |