Progress in Solid State Chemistry
Prog. Solid. State Ch.
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Progress in Solid State Chemistry
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Progress in Solid State Chemistry
Journal's Impact IF Ranking
Subcategory | Quartile | Rank | Percentile |
---|---|---|---|
Condensed Matter Physics | Q1 | 34/411 |
Condensed Matter Physics 91% |
Physical and Theoretical Chemistry | Q1 | 20/169 |
Physical and Theoretical Chemistry 88% |
Materials Science (all) | Q1 | 63/455 |
Materials Science (all) 86% |
Highly Cited Articles
Progress in Solid State Chemistry
High Impact Research Articles
Highly Cited Keywords
Progress in Solid State Chemistry
High Impact Research Keywords
Journal Research Scope
Progress in Solid State Chemistry
Research Scope
Research Scope
Progress in Solid State Chemistry
Research Scope
Abbreviation of Progress in Solid State Chemistry
The ISO4 abbreviation of Progress in Solid State Chemistry is Prog. Solid. State Ch. . It is the standardised abbreviation to be used for abstracting, indexing and referencing purposes and meets all criteria of the ISO 4 standard for abbreviating names of scientific journals.
ISO4 Abbreviation of Progress in Solid State Chemistry
ISO 4 (Information and documentation – Rules for the abbreviation of title words and titles of publications) is an international standard, defining a uniform system for the abbreviation of serial publication titles. One major use of ISO 4 is to abbreviate the names of scientific journals. The International Organization for Standardization (ISO) has appointed the ISSN International Centre as the registration authority for ISO 4. It maintains the List of Title Word Abbreviations (LTWA) containing standard abbreviations for words commonly found in serial titles. LTWA includes more than 56,000 words and their abbreviations in 65 languages. In conclusion, under ISO 4 standards, the Progress in Solid State Chemistry should be cited as Prog. Solid. State Ch. for abstracting, indexing and referencing purposes.
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Progress in Solid State Chemistry
Journal Abbreviation Key Metrics
Journal Title | Progress in Solid State Chemistry |
---|---|
Journal Abbreviation |
|
Journal Abbreviation Standard | ISO 4 (Information and documentation – Rules for the abbreviation of title words and titles of publications) |
Journal Abbreviation Registration Authority | ISSN International Centre |
Journal Abbreviation Rule | List of Title Word Abbreviations (LTWA) |
ISSN | 0079-6786 |
ISSN (Online) | - |
Publisher |
Elsevier Ltd.
|
Publication Frequency |
Unknown
|
Coverage |
1964-1965, 1967, 1971-1973, 1975-1976, 1978-1991, 1993, 1995-2020
|
Open Access |
NO
|
Language |
English
|
Highest Journal's Impact IF (2011 - 2024) | 9.313 |
Lowest Journal's Impact IF (2011 - 2024) | 4.087 |
Total Journal's Impact IF Growth Rate (2011 - 2024) | 35.7% |
Avarage Journal's Impact IF Growth Rate (2011 - 2024) | 4.0% |
Annual Journal's Impact IF Growth Rate (2023 - 2024) | -6.5 % |
Publication Fee | https://academic-accelerator.com//Publication-Fee/Progress-in-Solid-State-Chemistry |
Homepage | https://www.sciencedirect.com/journal/progress-in-solid-state-chemistry |
Submit Manuscript | https://www.elsevier.com/journals/progress-in-solid-state-chemistry/0079-6786/guide-for-authors |
About
Progress in Solid State Chemistry presents a chemical view of the solid state by providing up-to-date critical reviews written by acknowledged authorities in the field. It also publishes surveys of research progress and specialized articles devoted to summarizing particular recent developments. The aim is to address the need brought about by the literature on the chemistry of the solid state being widely dispersed, making it difficult to obtain a broad and unified assessment of the present state of knowledge. Special emphasis is given to relating physical properties and structural chemistry. Whereas structural chemistry at one time was concerned mostly with perfect solids, most activity focused upon understanding of solid properties focuses on imperfections. Entities such as vacancies, dislocations, and positive holes, which have no independent existence outside the solid itself, are of prime importance in modern solid state chemistry. None