Journal of Computational Electronics
Springer Netherlands Β· Netherlands Β· Est. 2002
β Indexed in the Web of Science Core Collection (SCIE) β Clarivate publishes an official Journal Impact Factor and JCR quartile for this journal.
See the official Impact Factor & quartile on the journalβs page βThe Impact Factor & JCR quartile are licensed by Clarivate β we link you to the official source instead of reprinting a number that can go out of date. Open metrics below: SCImago Q3. Source: Clarivate Journal Citation Reports.
Aims & Scope
The Journal of Computational Electronics brings together research on all aspects of modeling and simulation of modern electronics. This includes optical, electronic, mechanical, and quantum mechanical aspects, as well as research on the underlying mathematical algorithms and computational details. The related areas of energy conversion/storage and of molecular and biological systems, in which the thrust is on the charge transport, electronic, mechanical, and optical properties, are also covered. In particular, we encourage manuscripts dealing with device simulation; with optical and optoelectronic systems and photonics; with energy storage (e.g. batteries, fuel cells) and harvesting (e.g. photovoltaic), with simulation of circuits, VLSI layout, logic and architecture (based on, for example, CMOS devices, quantum-cellular automata, QBITs, or single-electron transistors); with electromagnetic simulations (such as microwave electronics and components); or with molecular and biological systems. However, in all these cases, the submitted manuscripts should explicitly address the electronic properties of the relevant systems, materials, or devices and/or present novel contributions to the physical models, computational strategies, or numerical algorithms. The Editors will emphasize advances and challenges arising from applications in multiscale problems focusing on those whose basis arises from physical and chemical sciences. A short list of the specific topics that lie within the scope of this new journal is as follows: Semiconductor Devices Optical Devices, Plasmonics, and Photonics Process Simulation Energy and Environment Nano-electro-mechanical systems Mathematical Approaches Open Quantum Systems
General Information
Submission Info
Ethics & Quality
Think.Check.Submit Compliance
Based on the Think.Check.Submit framework by DOAJ, COPE & OASPA. All data from verified open sources.
Publication & Citation Trend
Source: OpenAlex Β· Each yearβs green bar = citations earned by that yearβs papers, counted to date β so recent years look lower simply because their papers havenβt had time to be cited yet.
SJR Quartile by Discipline
Scimago ranks this journal separately in each subject category β its quartile can differ by discipline.
Subject Classification
Web of Science Categories
Scopus Categories
Research Topics (OpenAlex)
Frequently asked questions about Journal of Computational Electronics
Is Journal of Computational Electronics a predatory journal?
PubScope has no integrity flags on record for Journal of Computational Electronics: it is indexed in Web of Science, Scopus, and is not on DOAJ's withdrawn list. Its PubScope Trust Score is 90/100. Indexing is a transparency signal, not a guarantee β always confirm fit and policies before submitting.
What is the impact factor of Journal of Computational Electronics?
Journal of Computational Electronics is indexed in the Web of Science Core Collection, so Clarivate publishes an official Journal Impact Factor for it (since the 2023 Journal Citation Reports, every Core Collection journal β including Arts & Humanities and Emerging Sources titles β receives one). PubScope links to Clarivate's official source rather than reprinting the number, which can be out of date. Its open 2-year mean citedness is 2.67.
Is Journal of Computational Electronics indexed in Scopus and Web of Science?
Journal of Computational Electronics is indexed in Web of Science, Scopus.
What is the aims and scope of Journal of Computational Electronics?
The Journal of Computational Electronics brings together research on all aspects of modeling and simulation of modern electronics. This includes optical, electronic, mechanical, and quantum mechanical aspects, as well as research on the underlying mathematical algorithms and computational details. The related areas of energy conversion/storage and of molecular and biological systems, in which the thrust is on the charge transport, electronic, mechanical, and optical properties, are also covered. In particular, we encourage manuscripts dealing with device simulation; with optical and optoelectr
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See all βData updated: 2026-05-22 Β· Sources: SJR, DOAJ, OpenAlex, WoS, Crossref