{
  "docket": "carbon_nanotube_film_fabrication_for_more_effective_electrodes",
  "confidence": 0.95,
  "published_at": "2026-07-27T12:39:01Z",
  "summary": {
    "name": "summary",
    "value": "Highly accessible, nanotube electrodes for large surface area contact applications is marketed for licensing by University of Florida. It is documented in US patent US 7,704,479. The current assignee of record is University of Florida Research Foundation Inc. Google Patents reports its legal status as \u201cActive\u201d (an automated indicator, not a legal determination). Its expected expiration is 2027-09-12.",
    "citation": {
      "source": "ipnex",
      "license": "ipnex_derived",
      "method": "templated_summary_from_publishable_facts",
      "confidence": 0.6,
      "url": null
    }
  },
  "patent_number": {
    "name": "patent_number",
    "value": "US7704479",
    "citation": {
      "source": "google_patents",
      "license": "google_patents_ccby4.0",
      "method": "gp_page_documents_number",
      "confidence": 0.95,
      "url": "https://patents.google.com/patent/US7704479/en"
    }
  },
  "patent_fields": [
    {
      "name": "title",
      "value": "Highly accessible, nanotube electrodes for large surface area contact applications",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_dc_title",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "current_owner",
      "value": "University of Florida Research Foundation Inc",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_assignee_current",
        "confidence": 0.8,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "original_assignee",
      "value": "University of Florida Research Foundation Inc",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_assignee_original",
        "confidence": 0.85,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "legal_status",
      "value": "Active",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_legal_status_gp_disclaims_accuracy",
        "confidence": 0.7,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "filing_date",
      "value": "2007-09-12",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_filing_date",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "priority_date",
      "value": "2006-09-12",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_priority_date",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "publication_date",
      "value": "2010-04-27",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_publication_date",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    },
    {
      "name": "expiration_date",
      "value": "2027-09-12",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_anticipated_expiration",
        "confidence": 0.75,
        "url": "https://patents.google.com/patent/US7704479/en"
      }
    }
  ],
  "ownership": {
    "signal": "institution_owned",
    "flags_discrepancy": false,
    "institution": "University of Florida",
    "current_owner": "University of Florida Research Foundation Inc",
    "original_assignee": "University of Florida Research Foundation Inc"
  },
  "status": {
    "legal_status": "Active",
    "category": "active",
    "detail": "in_force",
    "in_force": true,
    "public_domain": false,
    "interpretation": null
  },
  "expiry": {
    "expiration_date": "2027-09-12",
    "basis": "anticipated",
    "as_of": "2026-07-30",
    "years_remaining": 1.1,
    "term": "expiring_soon",
    "interpretation": "A US patent's term is fixed and cannot be extended. About 1.1 years of exclusive term remain; the invention then enters the public domain, and it could end sooner if a maintenance fee goes unpaid."
  },
  "licensability": {
    "value": 50,
    "band": "moderate",
    "complete": true,
    "summary": "50/100 -- moderate licensability.",
    "components": [
      {
        "name": "Ownership",
        "state": "ok",
        "detail": "The marketing institution is still the patent's owner of record."
      },
      {
        "name": "Legal status",
        "state": "ok",
        "detail": "In force (Active); an exclusive patent right exists."
      },
      {
        "name": "Remaining term",
        "state": "caution",
        "detail": "Under ~2 years of exclusive term remain (to 2027-09-12)."
      }
    ]
  },
  "link_out": {
    "institution": "University of Florida",
    "listing_url": "https://ufinnovate.technologypublisher.com/tech/carbon_nanotube_film_fabrication_for_more_effective_electrodes"
  }
}