gptkbp:instanceOf
|
patent
|
gptkbp:environmentalImpact
|
Reduced waste
|
gptkbp:hasAbstract
|
A method for producing a high purity silicon product from a silicon-containing feedstock.
|
gptkbp:hasApplicationNumber
|
10/775,123
|
gptkbp:hasAssignee
|
gptkb:MEMC_Electronic_Materials,_Inc.
|
gptkbp:hasCitedPatent
|
gptkb:Journal_of_Materials_Science
gptkb:US_6,123,456_A
|
gptkbp:hasClaim
|
20
|
gptkbp:hasCollaborationsWith
|
gptkb:University_of_California
|
gptkbp:hasCountry
|
gptkb:US
|
gptkbp:hasDescription
|
The invention relates to a method for producing high purity silicon.
|
gptkbp:hasExaminer
|
Jane_Smith
|
gptkbp:hasFeature
|
Paid
|
gptkbp:hasFieldOfUse
|
semiconductors
|
gptkbp:hasFilingDate
|
2004-02-06
|
gptkbp:hasFunding
|
gptkb:National_Science_Foundation
|
gptkbp:hasGoals
|
Yes
|
gptkbp:hasImpactOn
|
High
|
gptkbp:hasInternationalClassification
|
C01G 9/00
|
gptkbp:hasInventor
|
gptkb:John_Doe
Venture_Capital_Firm
|
gptkbp:hasLegalStatus
|
Active
|
gptkbp:hasMember
|
Yes
|
gptkbp:hasParticipatedIn
|
Yes
|
gptkbp:hasPartnershipsWith
|
solar cells
Tech_Company
|
gptkbp:hasPatentNumber
|
6,789,585
|
gptkbp:hasPriorityDate
|
2024-02-06
2003-02-06
|
gptkbp:hasPublications
|
B1
2004-09-14
Silicon_Purification_Techniques
|
gptkbp:hasRelatedPatent
|
Process innovation
|
gptkbp:hasResearchInterest
|
gptkb:MIT
chemical engineering
Enhanced efficiency
|
gptkbp:hasSustainabilityInitiatives
|
Eco-friendly process
|
gptkbp:hasTechnicalField
|
materials science
|
gptkbp:hasTechnology
|
Improved silicon purity
|
gptkbp:hasTitle
|
Method for producing a high purity silicon product
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 6,789,585 C33
|
gptkbp:isCitedBy
|
gptkb:US_7,001,123_B2
|
gptkbp:isFiledIn
|
gptkb:United_States
|
gptkbp:isPartOf
|
US_patent_family
|
gptkbp:isRelatedTo
|
silicon production
|
gptkbp:market
|
High
Growing demand for silicon.
|