Aims and Scope of CrystEngComm
CrystEngComm is a peer-reviewed online-only scientific journal publishing original research and review articles on all aspects of crystal engineering including properties, polymorphism, target materials, and crystalline nanomaterials. It is published biweekly by the Royal Society of Chemistry and the editor-in-chief is Andrew Shore. According to the Journal Citation Reports, the journal has a 2018 impact factor of 3.382, ranking it second out of 23 journals in the category "Crystallography". CrystEngComm has a close association with the virtual web community, CrystEngCommunity. Less
Key Metrics
CiteScore 

5.7
Impact Factor 

< 5
Scite Index 

0.94 5-Year SI

SJR 

Q1Chemistry (all)

SNIP 

0.78
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Topics Covered on CrystEngComm
CrystEngComm Journal Specifications
Indexed in the following public directories
Web of Science
Scopus
SJR
| Overview | |
| Publisher | ROYAL SOC CHEMISTRY |
| Language | English |
| Frequency | Weekly |
| General Details | |
| Language | English |
| Frequency | Weekly |
| Publication Start Year | 1999 |
| Publisher URL | Visit website |
| Website URL | Visit website |
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Recently Published Papers in CrystEngComm
Solvated pyromellitic acid-modified separator for stable lithium metal anodes and high-performance Li–S batteries
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A Cu <sub>20</sub> cluster-based moisture-absorbing composite membrane for efficient photocatalytic hydrogen evolution in seawater under non-contact conditions
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Solvated pyromellitic acid-modified separator for stable lithium metal anodes and high-performance Li–S batteries
- 1 Jan 2026
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Supramolecular interactions and aromaticity in phenazine–hydroxybenzoic acid co-crystals
- 1 Jan 2026
- CrystEngComm
TADDOLs and methylcyclohexanones: selectivity, resolution and the kinetics of decomposition
- 1 Jan 2026
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Supercooled liquid during the evaporation and cooling crystallization of valsartan: a macroscopic observation
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- CrystEngComm
Zinc-rich cathode material ZnMn <sub>2</sub> O <sub>4</sub> for high-voltage zinc ion batteries
- 1 Jan 2026
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A Cu <sub>20</sub> cluster-based moisture-absorbing composite membrane for efficient photocatalytic hydrogen evolution in seawater under non-contact conditions
- 1 Jan 2026
- CrystEngComm