Che-Ming Jack Hu: h-index, Total Citations, and Citation Map
Che-Ming Jack Hu's h-index is 49 (77 i10-index, 19,550+ total citations across 144+ publications) according to Google Scholar as of May 2026. Che-Ming Jack Hu is affiliated with Research Fellow, Academia Sinica (Institute of Biomedical Sciences).
Che-Ming Jack Hu is a researcher affiliated with Research Fellow, Academia Sinica (Institute of Biomedical Sciences), specializing in Combination Drug Delivery, Biomimetic Materials, Vaccine Nanotechnology, Immunotherapy. Their work has been cited 19,550 times. This profile visualizes their global influence, highlighting strong citation networks in China.
Che-Ming Jack Hu's Citation Metrics
Bibliometric impact based on 144 indexed publications.
- H-Index
- 49
- i10-Index
- 77
- Total Citations
- 19,550
- Citing Countries
- 20
As of May 2026.
Che-Ming Jack Hu has an h-index of 49 and 19,550 total citations across 144 publications, with research cited by institutions in 20 countries.
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We've mapped 5,000 of 19,550 citations for Che-Ming Jack Hu
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Top Cited Works
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Erythrocyte membrane-camouflaged polymeric nanoparticles as a biomimetic delivery platform
20112,664
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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.
The researcher pioneered a biomimetic drug delivery platform using erythrocyte membrane-camouflaged polymeric nanoparticles, establishing a seminal framework for evading immune clearance.
The researcher developed nanoparticle-based systems for antimicrobial drug delivery, establishing a foundational framework that has been widely adopted by independent scientists globally.
The researcher developed a biomimetic nanosponge technology designed to absorb pore-forming toxins, establishing a novel therapeutic approach that has garnered significant independent academic attention.
Citation trend (last 10 years)Click to expand
Citation Trend (Last 10 Years)
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