Heteroatom Chemistry
Leading citation impact metric from Clarivate Journal Citation Reports
38 papers with at least that number of citations each
State Council for Professorship (HĐGSNN) Scoring
Quyết định số 26/QĐ-HĐGSNN ngày 11/7/2025 (Mục quốc tế)
HĐGSNN Score History
By article publication year| Year | Max Score | Evaluation Details | Source |
|---|---|---|---|
| 2026 | 1.75đ | WoS Q2 có IF ≥ 2.0(IF: 3.7) | 🔵 Computed |
| 2025 | 1.50đ | WoS Q2(IF: 1.4) | 🔵 Computed |
| 2024 | 1.50đ | WoS Q2(IF: 1.1) | 🔵 Computed |
| 2023 | 1.50đ | WoS Q2(IF: 0.3) | 🔵 Computed |
| 2022 | 1.50đ | WoS Q2(IF: 1.48) | 🔵 Computed |
| 2021 | 1.50đ | WoS Q2(IF: 1.366) | 🔵 Computed |
| 2020 | 1.50đ | WoS Q2(IF: 0.862) | 🔵 Computed |
| 2019 | 1.50đ | WoS Q2(IF: 1.011) | 🔵 Computed |
| 2018 | 1.50đ | WoS Q2(IF: 1.137) | 🔵 Computed |
Note: Domestic journal scores are officially collected from annual HĐGSNN decisions across councils. International journal scores are dynamically computed according to Decision 26/QĐ-HĐGSNN based on quartile and citation metrics in the publication year.
Aims & Scope
Heteroatom Chemistry brings together a broad, interdisciplinary group of chemists who work with compounds containing main-group elements of groups 13 through 17 of the Periodic Table, and certain other related elements. The fundamental reactivity under investigation should, in all cases, be concentrated about the heteroatoms. It does not matter whether the compounds being studied are acyclic or cyclic; saturated or unsaturated; monomeric, polymeric or solid state in nature; inorganic, organic, or naturally occurring, so long as the heteroatom is playing an essential role. Computational, experimental, and combined studies are equally welcome. Subject areas include (but are by no means limited to): -Reactivity about heteroatoms for accessing new products or synthetic pathways -Unusual valency main-group element compounds and their properties -Highly strained (e.g. bridged) main-group element compounds and their properties -Photochemical or thermal cleavage of heteroatom bonds and the resulting reactivity -Uncommon and structurally interesting heteroatom-containing species (including those containing multiple bonds and catenation) -Stereochemistry of compounds due to the presence of heteroatoms -Neighboring group effects of heteroatoms on the properties of compounds -Main-group element compounds as analogues of transition metal compounds -Variations and new results from established and named reactions (including Wittig, Kabachnik–Fields, Pudovik, Arbuzov, Hirao, and Mitsunobu) -Catalysis and green syntheses enabled by heteroatoms and their chemistry -Applications of compounds where the heteroatom plays a critical role. In addition to original research articles on heteroatom chemistry, the journal welcomes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
SCImago & Scopus Journal Intelligence
Global SCImago ranking, SJR prestige index, Scopus coverage, and societal policy impact
Weighted prestige citation metric per document indexed in the Scopus database.
Measures cumulative publication volume and citation impact.
Average citations received per document published in the 2-year window.
Estimated Article Processing Charge for Open Access publication.
Scopus 3-Year Publication & Citation Window
Aggregated from Scopus database across the 3-year SJR evaluation window.
Societal Impact & Inclusivity (SCImago)
Citations in government and international policy documents
Percentage of female authors published in the journal
Real-world societal policy reach and author gender diversity tracked by SCImago.
Scopus Subject Categories
Chinese Academy of Sciences (CAS) Classification
Major / minor zone classification and CAS Early Warning List history
Publishing & Editorial Information
Detailed publisher, peer-review turnaround, and publication cycle specifications
WoS Categories & Quartiles
Detailed JCR / JCI category rankings and quartile breakdown from Clarivate
| Category | Index | Rank | Quartile |
|---|---|---|---|
CHEMISTRY, MULTIDISCIPLINARY | JCRSCIE | 107/250 | Q2 |
CHEMISTRY, MULTIDISCIPLINARY | JCISCIE | 168/251 | Q3 |
Annual Historical Statistics & Publications
Track annual publication volume, total citations, and Impact Factor evolution
| Year | Impact Factor | Articles / Year | Total Citations |
|---|---|---|---|
| 2026 | — | 3 | 0 |
| 2025 | 1.4 | 4 | 2 |
| 2024 | 1.1 | — | — |
| 2023 | 0.3 | 3 | 24 |
| 2022 | 1.48 | 5 | 43 |
| 2021 | 1.366 | 2 | 4 |
| 2020 | 0.862 | 7 | 19 |
| 2019 | 1.011 | 19 | 221 |
| 2018 | 1.137 | 81 | 610 |
| 2017 | — | 65 | 366 |
| 2016 | — | 82 | 386 |
| 2015 | — | 54 | 328 |
| 2014 | — | 112 | 1,097 |
Journal Metrics & Citation Visualizations
Impact Factor Trend (2018–2024)
Clarivate IF trend for Heteroatom Chemistry
Total Cites vs Self-Cites
Evaluation of scholarly independence and citation reach
Citations per Document
Citation metric windows across 2, 3, and 4 years
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