gptkbp:instanceOf
|
patent
|
gptkbp:communityFeedback
|
positive
|
gptkbp:environmentalImpact
|
low emissions
|
gptkbp:hasAbstract
|
A method for improving efficiency in hydrogen fuel cells.
|
gptkbp:hasAssignee
|
gptkb:Tech_Innovations_LLC
|
gptkbp:hasCitedPatent
|
gptkb:US_930,123,458_H2
|
gptkbp:hasClaim
|
20
|
gptkbp:hasCollaborationsWith
|
gptkb:University_of_Technology
|
gptkbp:hasCompetitors
|
patented technology
|
gptkbp:hasContribution
|
online sales
high growth
|
gptkbp:hasCountry
|
930123456
|
gptkbp:hasDescription
|
This patent describes a novel approach to enhance the performance of hydrogen fuel cells.
|
gptkbp:hasExaminer
|
Jane_Smith
|
gptkbp:hasExhibition
|
acquisition.
|
gptkbp:hasFieldOfUse
|
automotive industry
energy production
|
gptkbp:hasFilingDate
|
2016-05-01
|
gptkbp:hasFunding
|
gptkb:Department_of_Energy
|
gptkbp:hasGoals
|
local suppliers
granted
|
gptkbp:hasInternationalClassification
|
H01M8/00
|
gptkbp:hasInventor
|
gptkb:Alice_Johnson
gptkb:John_Doe
|
gptkbp:hasLegalStatus
|
active
|
gptkbp:hasOccupation
|
pending
|
gptkbp:hasPartnershipsWith
|
gptkb:Green_Energy_Corp.
in development
|
gptkbp:hasPriorityDate
|
2015-05-01
|
gptkbp:hasProductLine
|
advanced manufacturing
|
gptkbp:hasPublications
|
2017-11-01
|
gptkbp:hasRelatedPatent
|
utility
demonstration model
US_930,123,455_H2
|
gptkbp:hasResearchInterest
|
conducted
scalability
|
gptkbp:hasSpecialty
|
completed
|
gptkbp:hasTechnicalField
|
renewable energy
|
gptkbp:hasTechnology
|
cost reduction
higher efficiency
|
gptkbp:hasTheme
|
automotive manufacturers
|
gptkbp:hasVariants
|
new catalyst material
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 930,123,456 H2
|
gptkbp:isCitedBy
|
US_930,123,457_H2
|
gptkbp:isFiledIn
|
gptkb:United_States
|
gptkbp:isFiledUnder
|
US_Patent_Law
|
gptkbp:isPartOf
|
patent family
|
gptkbp:isPublishedIn
|
gptkb:US_2017/0301234_A1
|
gptkbp:isRelatedTo
|
US_930,123,455_H2
|
gptkbp:market
|
electric vehicles
partnerships
global energy market
|
gptkbp:usesTechnology
|
hydrogen fuel cells
|