{"total":1,"items":[{"citing_arxiv_id":"2507.05047","ref_index":5,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Moir\\'e-resonant surface state in ultrathin RuO$_2$","primary_cat":"cond-mat.mtrl-sci","submitted_at":"2025-07-07T14:30:04+00:00","verdict":"CONDITIONAL","verdict_confidence":"MODERATE","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Ultrathin RuO2(110) on Ru(0001) shows a nonmagnetic moiré charge modulation enhanced by Fermi surface nesting, with no sign of surface magnetism.","context_count":1,"top_context_role":"background","top_context_polarity":"unclear","context_text":"Nature Electronics 5, 735-743 (2022). URL https://www.nature.com/articles/ s41928-022-00866-z. [5] Lee, Y., Suntivich, J., May, K. J., Perry, E. E. & Shao-Horn, Y. Synthesis and Activ- ities of Rutile IrO 2 and RuO2 Nanoparticles for Oxygen Evolution in Acid and Alkaline Solutions. The Journal of Physical Chem- istry Letters 3, 399-404 (2012). URL https: //pubs.acs.org/doi/10.1021/jz2016507. [6] Vadimsky, R. G., Frankenthal, R. P. & Thompson, D. E. Ru and RuO 2 as Elec- trical Contact Materials: Preparation and Environmental Interactions. Journal of The Electrochemical Society 126, 2017-2023 (1979). URL https://iopscience.iop.org/ article/10.1149/1.2128846. [7] ˇSmejkal, L., Sinova, J. & Jungwirth, T. Emerging research landscape of altermag-"}],"limit":50,"offset":0}