gptkbp:instanceOf
|
patent
|
gptkbp:economicImpact
|
cost-effective production
|
gptkbp:environmentalImpact
|
low emissions
|
gptkbp:hasAbstract
|
A method for producing high purity silicon from silicon dioxide.
|
gptkbp:hasAssignee
|
gptkb:Silicon_Innovations_Inc.
|
gptkbp:hasCitations
|
gptkb:US_4567890123_A1
|
gptkbp:hasClaim
|
10
|
gptkbp:hasContent
|
improved efficiency
requires specialized equipment
|
gptkbp:hasExaminer
|
Jane_Smith
|
gptkbp:hasFieldOfUse
|
electronics
|
gptkbp:hasFilingDate
|
1991-05-31
|
gptkbp:hasInternationalClassification
|
C01B 33/00
423/1.1
|
gptkbp:hasInventor
|
gptkb:John_Doe
|
gptkbp:hasLegalStatus
|
granted
|
gptkbp:hasPriorityDate
|
1990-05-31
|
gptkbp:hasPrograms
|
reduction
crystallization
purification
sintering
|
gptkbp:hasPublications
|
1991-09-24
|
gptkbp:hasRelatedPatent
|
semiconductors
solar cells
computer chips
|
gptkbp:hasResearchInterest
|
cost reduction
process optimization
scalability
environmental sustainability
alternative materials
chemical reduction
|
gptkbp:hasTechnicalField
|
materials science
|
gptkbp:hasTitle
|
Method for producing a high purity silicon product
|
gptkbp:hasTouristAttraction
|
gptkb:hydrochloric_acid
hydrogen
carbon
silicon dioxide
|
gptkbp:hasVariants
|
high purity silicon
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 5050122334 A1
|
gptkbp:isCitedBy
|
US_1234567890_A1
|
gptkbp:isFiledIn
|
gptkb:United_States
|
gptkbp:isRelatedTo
|
silicon production
|
gptkbp:pageCount
|
12
|