@prefix : . @prefix owl: . @prefix rdf: . @prefix xml: . @prefix xsd: . @prefix bibo: . @prefix echo: . @prefix emmo: . @prefix foaf: . @prefix rdfs: . @prefix skos: . @prefix vann: . @prefix chems: . @prefix schema: . @prefix dcterms: . @base . rdf:type owl:Ontology ; owl:versionIRI ; owl:imports ; dcterms:abstract "A domain ontology for Solid Oxide Electrolysis Cells (SOECs) with focus on hydrogen production."@en ; dcterms:contributor :PatriceTochon ; dcterms:creator emmo:FrancescaBleken , emmo:JesperFriis ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; dcterms:mediator emmo:EMMC_ASBL ; dcterms:publisher ; dcterms:title "Solid Oxide Electrolysis Cell (SOEC) domain ontology"@en ; vann:preferredNamespacePrefix "soec" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/sofc/soec" ; owl:versionInfo "0.6.2"@en . ################################################################# # Classes ################################################################# ### https://w3id.org/emmo/domain/sofc/soec#EMMO_4059cdfb_4066_4559_ac21_5b460697eaed :EMMO_4059cdfb_4066_4559_ac21_5b460697eaed rdf:type owl:Class ; rdfs:subClassOf ; skos:prefLabel "ElectrochemicalImpedanceSpectroscopy"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "A technique that analyzes the frequency-dependent impedance of electrochemical systems to study their behavior. It applies a small amplitude AC voltage signal over a range of frequencies and measures the resulting current, allowing for the characterization of materials and electrode reactions."@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "Electrochemical Impedance Spectroscopy (EIS) is used in diverse fields like battery research, corrosion studies, and biosensors, providing valuable insights into kinetic and mechanistic aspects of electrochemical processes."@en . ### https://w3id.org/emmo/domain/sofc/soec#EMMO_5a360b60_f0b1_4b01_acea_c69d8fb7ba0d :EMMO_5a360b60_f0b1_4b01_acea_c69d8fb7ba0d rdf:type owl:Class ; rdfs:subClassOf echo:electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; skos:prefLabel "HydrogenElectrode"@en ; emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-16" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Platinized platinum electrode saturated by a stream of pure gaseous hydrogen."@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "A platinized platinum electrode consists of a platinum rod covered by compact platinum powder called platinum black."@en . ### https://w3id.org/emmo/domain/sofc/soec#EMMO_5c8227bf_f0c8_4230_871b_e66d49417f5c :EMMO_5c8227bf_f0c8_4230_871b_e66d49417f5c rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_7cb03f8e_6062_4106_9ffb_38cbe8eaa5f6 ; skos:prefLabel "MachineLearning"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "An artificial intelligence agent that is based on statistical algorithms that can learn from data and generalise to unseen data, and thus perform tasks without explicit instructions."@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "Machine learning (ML) finds application in many fields, including natural language processing, computer vision, speech recognition, email filtering, agriculture, and medicine. The application of ML to business problems is known as predictive analytics."@en ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Machine_learning"^^xsd:anyURI . ### https://w3id.org/emmo/domain/sofc/soec#EMMO_723bf0e7_daeb_406e_89f7_947bfdcace4d :EMMO_723bf0e7_daeb_406e_89f7_947bfdcace4d rdf:type owl:Class ; rdfs:subClassOf emmo:EMMO_7c8007b0_58a7_4486_bf1c_4772852caca0 ; skos:prefLabel "CellCurrentDensity"@en ; emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=485-12-01" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "Electric current per unit active area (of a fuel cell)."@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "The current density is typically expressed in A/m2 or A/cm2."@en . ### https://w3id.org/emmo/domain/sofc/soec#EMMO_c2c1fffa_fb32_47b4_85b7_68b91816ff92 :EMMO_c2c1fffa_fb32_47b4_85b7_68b91816ff92 rdf:type owl:Class ; rdfs:subClassOf ; skos:prefLabel "FocusedIonBeam"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "A characterisation technique that used an ion beam for site-specific analysis, deposition, and ablation of materials."@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "The FIB, technique is used particularly in the semiconductor industry, materials science and increasingly in the biological field."@en , "The term FIB is also used for the scientific instrument used for this technique. A FIB resembles a scanning electron microscope (SEM). However, while the SEM uses a focused beam of electrons to image the sample in the chamber, a FIB setup uses a focused beam of ions instead. FIB can also be incorporated in a system with both electron and ion beam columns, allowing the same feature to be investigated using either of the beams."@en ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Focused_ion_beam"^^xsd:anyURI . ### Generated by the OWL API (version 4.5.29.2024-05-13T12:11:03Z) https://github.com/owlcs/owlapi