Kenji Watanabe: h-index, Total Citations, and Citation Map
Kenji Watanabe's h-index is 239 (1573 i10-index, 261,753+ total citations across 3+ publications) according to Google Scholar as of May 2026. Kenji Watanabe is affiliated with National Institute for Materials Science.
Kenji Watanabe is a researcher affiliated with National Institute for Materials Science, specializing in Materials Science. Their work has been cited 261,753 times. This profile visualizes their global influence, highlighting strong citation networks in United States.
Kenji Watanabe's Citation Metrics
Bibliometric impact based on 3 indexed publications.
- H-Index
- 239
- i10-Index
- 1573
- Total Citations
- 261,753
- Citing Countries
- 10
As of May 2026.
Kenji Watanabe has an h-index of 239 and 261,753 total citations across 3 publications, with research cited by institutions in 10 countries.
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We've mapped 5,000 of 261,753 citations for Kenji Watanabe
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Global Impact Map
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Top Cited Works
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Unconventional superconductivity in magic-angle graphene superlattices
201810,118
Top Citing Countries
Top Citing Institutions
Visa Evidence Package
Views and exports tuned for EB-1A, O-1A, and EB-2 NIW petitions. Sustained acclaim, geographic reach, and independent-citation filtering are the strongest evidence categories immigration adjudicators look for.
Significant Contributions
Auto-detected research lines — a seminal paper and the follow-up work building on it. Review and edit before using in a petition. Each Free PDF opens in a new tab — EB-1A organises this into the structure USCIS applies to Criterion 5 of 8 CFR § 204.5(h)(3)(v); EB-1B re-frames it under § 204.5(i)(3) (outstanding researcher); NIW presents it under prong 2 of Matter of Dhanasar.
4 citing papers could not be classified (no author data) — excluded from the percentages above.
The researcher established boron nitride as a critical substrate for high-quality graphene electronics, a foundational contribution evidenced by over 8,900 citations.
The researcher established the existence of correlated insulator behavior at half-filling in magic-angle graphene superlattices, a seminal finding published in Nature in 2018.
The researcher pioneered the discovery of unconventional superconductivity in magic-angle graphene superlattices, establishing a foundational framework for studying correlated electron phenomena in twisted van der Waals materials.
Citation trend (last 10 years)Click to expand
Citation Trend (Last 10 Years)
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