
Academic Journal
Q1npj Quantum Materials
About npj Quantum Materials
npj Quantum Materials is a scholarly journal published by Nature Publishing Group. SCImago 2025 lists it in Q1, with an SJR of 2.285 and H-index of 63.
Coverage: 2016-2026. Research categories: Condensed Matter Physics (Q1); Electronic, Optical and Magnetic Materials (Q1).
Verified field sources
- Journal Impact Factor: 6.6 — Official source; checked 2026-10-03. 2025 Journal Impact Factor reported by Nature Portfolio; not a five-year impact factor.
- Impact Factor year: 2025 — Official source; checked 2026-10-03. 2025 Journal Impact Factor reported by Nature Portfolio; not a five-year impact factor.
Open-access policies and author information
Reported in the official DOAJ public CSV snapshot (2026-09-01), downloaded 2026-10-03. Record updated 2026-03-17. This snapshot does not establish today’s listing status or fee quotation.
Publisher policy links recorded by DOAJ
- Aims and scope ↗
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- Instructions for authors ↗
- Peer-review policy ↗
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- Copyright policy ↗
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Source: DOAJ journal record. Journal metadata is distributed by DOAJ under CC0. Confirm current fees, tax, eligibility and waiver terms with the publisher.
Source-backed journal facts
Topics in published research
Advanced Condensed Matter Physics; Topological Materials and Phenomena; Physics of Superconductivity and Magnetism; Magnetic and transport properties of perovskites and related materials; Iron-based superconductors research; 2D Materials and Applications.
OpenAlex classifies topics from published works. These topics are not the publisher’s official aims and scope.
Source: OpenAlex source record. Retrieved 2026-10-03. Source record updated 2026-10-02. OpenAlex metrics are different from SCImago metrics and the Clarivate Journal Impact Factor.
Journal Metrics
Quartile, SJR and the listed SCImago H-index use the 2025 imported SCImago dataset. A quartile may vary by subject category. Values without a source or reporting year are unverified historical entries. Verify the current Journal Impact Factor with Clarivate or the publisher before using it.
Aims & Scope
The publisher’s official aims and scope have not yet been verified for this profile. Use the journal website to check subject fit and accepted article types before submitting.
Recent Research Articles
Latest publications matched automatically by ISSN.
Non-magnetic ground state in A2WCl6, A = Cs, Rb, K: Face-centered cubic system with spin-orbit-entangled J = 2 states
Tomohiro Takayama, Kenji Ishii, Sebastian Bette, Jürgen Nuss et al.
2026-10-03 · DOI: 10.1038/s41535-026-00945-wLayer-decoupled electronic reconstruction and a robust charge density wave in GdTe3
Xin Zheng, Yunbo Wu, Tongrui Li, Yuliang Li et al.
2026-09-28 · DOI: 10.1038/s41535-026-00946-9Simulation of topological X-gates via braiding of Majorana zero modes in an interacting quantum-dot system
Bradraj Pandey, Cole Peeters, Satoshi Okamoto, Pontus Laurell et al.
2026-09-21 · DOI: 10.1038/s41535-026-00944-xKugel-Khomskii materials
Erik Koch, Eva Pavarini
2026-09-16 · DOI: 10.1038/s41535-026-00942-zMicroscopic theory revealing Ising criticality with distinct sublattice orders in extended Kitaev chains
Mandev Bhullar, Philip Richard, Hae-Young Kee
2026-09-15 · DOI: 10.1038/s41535-026-00943-yControlling magnetic interactions in α-RuCl3 by strain
A. Koitzsch, T. Klaproth, O. Janson, A. A. Popov et al.
2026-09-12 · DOI: 10.1038/s41535-026-00939-8Confined conduction channels near a metal-insulator transition
T. R. Devidas, Dror Yahav, Jonathan T. Reichanadter, Matan Sterenberg et al.
2026-09-08 · DOI: 10.1038/s41535-026-00928-xSurface phonon Hall viscosity induced phonon chirality and nonreciprocity in magnetic topological insulator films
Abhinava Chatterjee, Chao-Xing Liu
2026-09-05 · DOI: 10.1038/s41535-026-00940-1RIXS observation of bond-directional excitations in the Kitaev material Na2IrO3
Marco Magnaterra, Karolin Hopfer, Christoph J. Sahle, Marco Moretti Sala et al.
2026-09-03 · DOI: 10.1038/s41535-026-00938-9Successive spin reorientations and multi-k magnetism in A-site ordered perovskites RBaFe2O6
K. Ji, M. Goto, M. Iihoshi, Z. Tan et al.
2026-09-01 · DOI: 10.1038/s41535-026-00941-0Automated electrostatic characterization of quantum dot devices in single- and bilayer heterostructures
Merritt P. R. Losert, Dario Denora, Barnaby van Straaten, Stefan D. Oosterhout et al.
2026-09-01 · DOI: 10.1038/s41535-026-00921-4Distinct lattice and charge excitations in AV3Sb5 kagome superconductors
Dongjin Oh, Stefan Enzner, Lennart Klebl, Harley D. Scammell et al.
2026-08-31 · DOI: 10.1038/s41535-026-00937-wTwo-dimensional coherent spectroscopy of CoNb2O6
Yoshito Watanabe, Simon Trebst, Ciarán Hickey
2026-08-20 · DOI: 10.1038/s41535-026-00936-xAnisotropic Kitaev spin glass in Li2RuxIr1−xO3
Mayia A. Vranas, Alejandro Ruiz, Vikram Nagarajan, Erik S. Lamb et al.
2026-08-19 · DOI: 10.1038/s41535-026-00935-ySuperconductivity from doping symmetric mass generation insulators: application to La3Ni2O7 under pressure
Da-Chuan Lu, Miao Li, Zhao-Yi Zeng, Wanda Hou et al.
2026-08-17 · DOI: 10.1038/s41535-026-00925-0Gate-dielectric stack engineering for high-mobility and low-noise SiMOS quantum devices
Md. Mamunur Rahman, Ensar Vahapoglu, Kok Wai Chan, Tuomo Tanttu et al.
2026-08-06 · DOI: 10.1038/s41535-026-00934-zRevealing the microscopic origin of the magnetization plateau in Na3Ni2BiO6
Amanda A. Konieczna, Marius Möller, P. Peter Stavropoulos, Roser Valentí et al.
2026-08-04 · DOI: 10.1038/s41535-026-00932-1Strain-control of electronic superlattice domains in CsV3Sb5
E. Sadrollahi, J. Almeida Mendes, N. Stilkerich, A. K. Sharma et al.
2026-08-03 · DOI: 10.1038/s41535-026-00933-0Robust field-free superconducting diode effect in FeTe0.55Se0.45
Peng Dong, Jinghui Wang, Yanjiang Wang, Jianjun Xiao et al.
2026-08-02 · DOI: 10.1038/s41535-026-00930-3Exciton–phonon coupling in two-dimensional materials: from phenomena to applications
Zhennan Wang, Feilong Song, Haonan Chang, Jun Zhang et al.
2026-07-27 · DOI: 10.1038/s41535-026-00931-2Reviews
Community Reviews
Version History
September 25, 2026 at 6:36 am
September 22, 2026