{
  "docket": "improved_nanoparticle_production_that_uses_in-situ_magnetic_processing",
  "confidence": 0.95,
  "published_at": "2026-07-27T12:39:01Z",
  "summary": {
    "name": "summary",
    "value": "Method for producing nanoparticles and the nanoparticles produced therefrom is marketed for licensing by University of Florida. It is documented in US patent US 10,343,219. The current assignee of record is UT Battelle LLC. Google Patents reports its legal status as \u201cActive\u201d (an automated indicator, not a legal determination). Its expected expiration is 2035-12-24.",
    "citation": {
      "source": "ipnex",
      "license": "ipnex_derived",
      "method": "templated_summary_from_publishable_facts",
      "confidence": 0.6,
      "url": null
    }
  },
  "patent_number": {
    "name": "patent_number",
    "value": "US10343219",
    "citation": {
      "source": "google_patents",
      "license": "google_patents_ccby4.0",
      "method": "gp_page_documents_number",
      "confidence": 0.95,
      "url": "https://patents.google.com/patent/US10343219/en"
    }
  },
  "patent_fields": [
    {
      "name": "title",
      "value": "Method for producing nanoparticles and the nanoparticles produced therefrom",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_dc_title",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US10343219/en"
      }
    },
    {
      "name": "current_owner",
      "value": "UT Battelle LLC",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_assignee_current",
        "confidence": 0.8,
        "url": "https://patents.google.com/patent/US10343219/en"
      }
    },
    {
      "name": "original_assignee",
      "value": "UT Battelle LLC",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_assignee_original",
        "confidence": 0.85,
        "url": "https://patents.google.com/patent/US10343219/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/US10343219/en"
      }
    },
    {
      "name": "filing_date",
      "value": "2015-03-04",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_filing_date",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US10343219/en"
      }
    },
    {
      "name": "priority_date",
      "value": "2014-03-04",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_priority_date",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US10343219/en"
      }
    },
    {
      "name": "publication_date",
      "value": "2019-07-09",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_publication_date",
        "confidence": 0.9,
        "url": "https://patents.google.com/patent/US10343219/en"
      }
    },
    {
      "name": "expiration_date",
      "value": "2035-12-24",
      "citation": {
        "source": "google_patents",
        "license": "google_patents_ccby4.0",
        "method": "microdata_adjusted_expiration",
        "confidence": 0.75,
        "url": "https://patents.google.com/patent/US10343219/en"
      }
    }
  ],
  "ownership": {
    "signal": "third_party_owned",
    "flags_discrepancy": true,
    "institution": "University of Florida",
    "current_owner": "UT Battelle LLC",
    "original_assignee": "UT Battelle LLC"
  },
  "status": {
    "legal_status": "Active",
    "category": "active",
    "detail": "in_force",
    "in_force": true,
    "public_domain": false,
    "interpretation": null
  },
  "expiry": {
    "expiration_date": "2035-12-24",
    "basis": "adjusted",
    "as_of": "2026-07-30",
    "years_remaining": 9.4,
    "term": "active_term",
    "interpretation": null
  },
  "licensability": {
    "value": 10,
    "band": "weak",
    "complete": true,
    "summary": "10/100 -- weak licensability.",
    "components": [
      {
        "name": "Ownership",
        "state": "blocked",
        "detail": "The patent is now owned by a third party (UT Battelle LLC), not the marketing institution, so it may not be theirs to license."
      },
      {
        "name": "Legal status",
        "state": "ok",
        "detail": "In force (Active); an exclusive patent right exists."
      },
      {
        "name": "Remaining term",
        "state": "ok",
        "detail": "About 9 years of exclusive term remain (to 2035-12-24)."
      }
    ]
  },
  "link_out": {
    "institution": "University of Florida",
    "listing_url": "https://ufinnovate.technologypublisher.com/tech/improved_nanoparticle_production_that_uses_in-situ_magnetic_processing"
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}