{"klassen":[{"klasse":"H01M10/052","omschrijving":"Lithium secondary batteries (accumulators)","pagina":20,"uitgeput":false,"n":160,"van":"2004-02-06","tot":"2023-09-19"}],"meters":[{"prefix":"H01M","meter":"netcongestie en energieopslag","bron":"Netbeheer Nederland, capaciteitskaart (transportschaarste per provincie); CBS/ACM energie","url":"https://capaciteitskaart.netbeheernederland.nl/"},{"prefix":"H02J","meter":"netcongestie","bron":"Netbeheer Nederland, capaciteitskaart","url":"https://capaciteitskaart.netbeheernederland.nl/"},{"prefix":"A01","meter":"droogte en bodem","bron":"KNMI neerslagtekort; LCW droogtemonitor","url":"https://www.knmi.nl/nederland-nu/klimatologie/geografische-overzichten/neerslagtekort_droogte"},{"prefix":"C02F","meter":"waterkwaliteit en droogte","bron":"LCW droogtemonitor; KRW-toestand","url":"https://www.rijkswaterstaat.nl/water/waterbeheer/droogte-en-watertekort"},{"prefix":"A61","meter":"gezondheid als toestand","bron":"UWV instroom arbeidsongeschiktheid (WIA) jongeren; CBS gezondheidsmonitor","url":"https://www.uwv.nl/nl/over-uwv/kennis-cijfers-en-onderzoek"}],"parameters":["weight","length","area","volume","speed","force","stress/pressure","shape","stability","strength","durability","temperature","brightness","energy use","power","loss of energy","loss of substance","loss of information","loss of time","quantity of substance","reliability","accuracy of measurement","manufacturing precision","harmful factors acting on object","harmful side effects","manufacturability","convenience of use","repairability","adaptability","complexity of device","complexity of control","level of automation","productivity","capacity","voltage","conductivity","cost"],"aanvrager":{"naam":"J. Konstapel","adres":"Tunicaduin 11, Leiden"},"kandidaten":[{"id":8,"klasse":"H01M10/052","ronde":2,"tegenstelling":{"a":"durability","b":"shape","n":13,"bewijs":[{"pub":"CN116093316B","zin":"The negative electrode active material provided by the application has stable low potential platform, high gram capacity and high reversible capacity, and can be applied to a secondary battery to improve the energy density of the secondary battery and improve "},{"pub":"US20230108289A1","zin":"In addition, lithium iron phosphate monocrystal fully fills in gaps between the lithium iron phosphate secondary particles to further improve a compacted density of the plate and reduce a membrane resistance of the positive electrode plate, thereby improving p"},{"pub":"US12300816B2","zin":"The positive electrode active material provided in the present application has relatively low cobalt content and relatively high cycle life and capacity performance."},{"pub":"US12341156B2","zin":"The lithium battery of the present invention is prepared by combining coextrusion technology and rolling technology to achieve one-time processing and forming, which has the characteristics of a high production efficiency, and a simple operation, and the obtai"}]},"snede":{"termen":["active material","current collector","positive electrode","negative electrode","material layer","active material layer","secondary battery"],"drempel":0.2,"aanheffen":[{"n":18,"df":6.9,"kern":"electrochemical cell"},{"n":17,"df":6.5,"kern":"lithium secondary battery"},{"n":10,"df":3.8,"kern":"solid electrolyte material"},{"n":8,"df":3.1,"kern":"secondary battery"},{"n":8,"df":3.1,"kern":"all-solid secondary battery"},{"n":8,"df":3.1,"kern":"rechargeable lithium battery"}]},"as":"conditie","eindfunctie":"Ladingdragers moeten omkeerbaar worden opgeslagen en vrijgegeven over vele cycli zonder verlies van toegankelijke sites.","idee":"Toepassing van een drukregelmechanisme om de interne druk binnen de cel te stabiliseren tijdens cycli.","hoofdconclusie":"A battery cell comprising a pressure regulation mechanism configured to stabilize internal pressure within the cell during charge and discharge cycles, thereby improving cell performance and longevity.","boom":[{"kenmerk":"battery cell comprising a pressure regulation mechanism","volgt_uit":null},{"kenmerk":"pressure regulation mechanism configured to stabilize internal pressure","volgt_uit":"battery cell comprising a pressure regulation mechanism"},{"kenmerk":"stabilize internal pressure during charge and discharge cycles","volgt_uit":"pressure regulation mechanism configured to stabilize internal pressure"},{"kenmerk":"improve cell performance and longevity","volgt_uit":"stabilize internal pressure during charge and discharge cycles"}],"nieuwheid":{"n":2726,"cos":0.611,"leeshulp":"geen conclusie in het corpus komt dichtbij","conclusie":17,"dichtstbij":"US12394844B2"},"inventief":{"ok":true,"drempel":0.2,"getoetst":7,"gevonden":[]},"spanning":{"url":"https://capaciteitskaart.netbeheernederland.nl/","bron":"Netbeheer Nederland, capaciteitskaart (transportschaarste per provincie); CBS/ACM energie","meter":"netcongestie en energieopslag","lezing":"geen automatische lezing — de meter is publiek, de stand wordt met de hand gelezen","prefix":"H01M"},"model":"gpt-4o","materiaal_id":7967687,"aanvrager":{"naam":"J. Konstapel","adres":"Tunicaduin 11, Leiden"},"vingerafdruk":"66985f6bc6d5df7addadcff56a7159e2532936088d74d1e355f43c8c5b388f84","via":null,"gemaakt":"2026-09-18T14:18:56.621Z"},{"id":7,"klasse":"H01M10/052","ronde":2,"tegenstelling":{"a":"durability","b":"shape","n":13,"bewijs":[{"pub":"CN116093316B","zin":"The negative electrode active material provided by the application has stable low potential platform, high gram capacity and high reversible capacity, and can be applied to a secondary battery to improve the energy density of the secondary battery and improve "},{"pub":"US20230108289A1","zin":"In addition, lithium iron phosphate monocrystal fully fills in gaps between the lithium iron phosphate secondary particles to further improve a compacted density of the plate and reduce a membrane resistance of the positive electrode plate, thereby improving p"},{"pub":"US12300816B2","zin":"The positive electrode active material provided in the present application has relatively low cobalt content and relatively high cycle life and capacity performance."},{"pub":"US12341156B2","zin":"The lithium battery of the present invention is prepared by combining coextrusion technology and rolling technology to achieve one-time processing and forming, which has the characteristics of a high production efficiency, and a simple operation, and the obtai"}]},"snede":{"termen":["active material","current collector","positive electrode","negative electrode","material layer","active material layer","secondary battery"],"drempel":0.2,"aanheffen":[{"n":18,"df":6.9,"kern":"electrochemical cell"},{"n":17,"df":6.5,"kern":"lithium secondary battery"},{"n":10,"df":3.8,"kern":"solid electrolyte material"},{"n":8,"df":3.1,"kern":"secondary battery"},{"n":8,"df":3.1,"kern":"all-solid secondary battery"},{"n":8,"df":3.1,"kern":"rechargeable lithium battery"}]},"as":"schaal","eindfunctie":"Ladingdragers moeten omkeerbaar worden opgeslagen en vrijgegeven over vele cycli zonder verlies van toegankelijke sites.","idee":"Gebruik van microstructuren binnen de elektrode om de oppervlakte-tot-volume verhouding te maximaliseren voor verbeterde reactievefficiëntie.","hoofdconclusie":"An electrode structure comprising microstructures that maximize the surface-to-volume ratio, thereby enhancing the reactivity and efficiency of the electrode.","boom":[{"kenmerk":"electrode structure comprising microstructures","volgt_uit":null},{"kenmerk":"microstructures maximize surface-to-volume ratio","volgt_uit":"electrode structure comprising microstructures"},{"kenmerk":"enhance reactivity and efficiency of the electrode","volgt_uit":"microstructures maximize surface-to-volume ratio"}],"nieuwheid":{"n":2726,"cos":0.62,"leeshulp":"geen conclusie in het corpus komt dichtbij","conclusie":17,"dichtstbij":"US12057574B2"},"inventief":{"ok":true,"drempel":0.2,"getoetst":7,"gevonden":[]},"spanning":{"url":"https://capaciteitskaart.netbeheernederland.nl/","bron":"Netbeheer Nederland, capaciteitskaart (transportschaarste per provincie); CBS/ACM energie","meter":"netcongestie en energieopslag","lezing":"geen automatische lezing — de meter is publiek, de stand wordt met de hand gelezen","prefix":"H01M"},"model":"gpt-4o","materiaal_id":7967686,"aanvrager":{"naam":"J. Konstapel","adres":"Tunicaduin 11, Leiden"},"vingerafdruk":"274c6aa888a3f402fa27fc70584d2ec7fe3869109f07043a251c96cf5343c87e","via":null,"gemaakt":"2026-09-18T14:18:55.977Z"},{"id":6,"klasse":"H01M10/052","ronde":2,"tegenstelling":{"a":"durability","b":"shape","n":13,"bewijs":[{"pub":"CN116093316B","zin":"The negative electrode active material provided by the application has stable low potential platform, high gram capacity and high reversible capacity, and can be applied to a secondary battery to improve the energy density of the secondary battery and improve "},{"pub":"US20230108289A1","zin":"In addition, lithium iron phosphate monocrystal fully fills in gaps between the lithium iron phosphate secondary particles to further improve a compacted density of the plate and reduce a membrane resistance of the positive electrode plate, thereby improving p"},{"pub":"US12300816B2","zin":"The positive electrode active material provided in the present application has relatively low cobalt content and relatively high cycle life and capacity performance."},{"pub":"US12341156B2","zin":"The lithium battery of the present invention is prepared by combining coextrusion technology and rolling technology to achieve one-time processing and forming, which has the characteristics of a high production efficiency, and a simple operation, and the obtai"}]},"snede":{"termen":["active material","current collector","positive electrode","negative electrode","material layer","active material layer","secondary battery"],"drempel":0.2,"aanheffen":[{"n":18,"df":6.9,"kern":"electrochemical cell"},{"n":17,"df":6.5,"kern":"lithium secondary battery"},{"n":10,"df":3.8,"kern":"solid electrolyte material"},{"n":8,"df":3.1,"kern":"secondary battery"},{"n":8,"df":3.1,"kern":"all-solid secondary battery"},{"n":8,"df":3.1,"kern":"rechargeable lithium battery"}]},"as":"plaats","eindfunctie":"Ladingdragers moeten omkeerbaar worden opgeslagen en vrijgegeven over vele cycli zonder verlies van toegankelijke sites.","idee":"Integratie van een beschermende laag op de buitenste oppervlakken van de elektroden om degradatie door externe factoren te verminderen.","hoofdconclusie":"An electrochemical cell comprising electrodes with an external protective layer applied to the outer surfaces of the electrodes to reduce degradation from environmental exposure and improve cell lifespan.","boom":[{"kenmerk":"electrochemical cell comprising electrodes with an external protective layer","volgt_uit":null},{"kenmerk":"protective layer applied to outer surfaces of electrodes","volgt_uit":"electrochemical cell comprising electrodes with an external protective layer"},{"kenmerk":"reduce degradation from environmental exposure","volgt_uit":"protective layer applied to outer surfaces of electrodes"},{"kenmerk":"improve cell lifespan","volgt_uit":"reduce degradation from environmental exposure"}],"nieuwheid":{"n":2726,"cos":0.692,"leeshulp":"geen conclusie in het corpus komt dichtbij","conclusie":11,"dichtstbij":"US12614711B2"},"inventief":{"ok":true,"drempel":0.2,"getoetst":7,"gevonden":[]},"spanning":{"url":"https://capaciteitskaart.netbeheernederland.nl/","bron":"Netbeheer Nederland, capaciteitskaart (transportschaarste per provincie); CBS/ACM energie","meter":"netcongestie en energieopslag","lezing":"geen automatische lezing — de meter is publiek, de stand wordt met de hand gelezen","prefix":"H01M"},"model":"gpt-4o","materiaal_id":7967685,"aanvrager":{"naam":"J. Konstapel","adres":"Tunicaduin 11, Leiden"},"vingerafdruk":"2e2c710edbff2b32a24b9ee1bf2287aafaa2f415f7e5c76e446035151d3b6b92","via":null,"gemaakt":"2026-09-18T14:18:55.371Z"},{"id":5,"klasse":"H01M10/052","ronde":2,"tegenstelling":{"a":"durability","b":"shape","n":13,"bewijs":[{"pub":"CN116093316B","zin":"The negative electrode active material provided by the application has stable low potential platform, high gram capacity and high reversible capacity, and can be applied to a secondary battery to improve the energy density of the secondary battery and improve "},{"pub":"US20230108289A1","zin":"In addition, lithium iron phosphate monocrystal fully fills in gaps between the lithium iron phosphate secondary particles to further improve a compacted density of the plate and reduce a membrane resistance of the positive electrode plate, thereby improving p"},{"pub":"US12300816B2","zin":"The positive electrode active material provided in the present application has relatively low cobalt content and relatively high cycle life and capacity performance."},{"pub":"US12341156B2","zin":"The lithium battery of the present invention is prepared by combining coextrusion technology and rolling technology to achieve one-time processing and forming, which has the characteristics of a high production efficiency, and a simple operation, and the obtai"}]},"snede":{"termen":["active material","current collector","positive electrode","negative electrode","material layer","active material layer","secondary battery"],"drempel":0.2,"aanheffen":[{"n":18,"df":6.9,"kern":"electrochemical cell"},{"n":17,"df":6.5,"kern":"lithium secondary battery"},{"n":10,"df":3.8,"kern":"solid electrolyte material"},{"n":8,"df":3.1,"kern":"secondary battery"},{"n":8,"df":3.1,"kern":"all-solid secondary battery"},{"n":8,"df":3.1,"kern":"rechargeable lithium battery"}]},"as":"tijd/fase","eindfunctie":"Ladingdragers moeten omkeerbaar worden opgeslagen en vrijgegeven over vele cycli zonder verlies van toegankelijke sites.","idee":"Gebruik van een tijdsafhankelijke temperatuurregeling om de elektrochemische reacties te optimaliseren gedurende de laad- en ontlaadcycli.","hoofdconclusie":"A battery system comprising a temperature control unit configured to dynamically adjust the temperature of the battery based on the charge and discharge phases to optimize the electrochemical reactions and enhance battery longevity.","boom":[{"kenmerk":"battery system comprising a temperature control unit","volgt_uit":null},{"kenmerk":"temperature control unit configured to dynamically adjust temperature","volgt_uit":"battery system comprising a temperature control unit"},{"kenmerk":"temperature adjustment based on charge and discharge phases","volgt_uit":"temperature control unit configured to dynamically adjust temperature"},{"kenmerk":"optimize electrochemical reactions and enhance battery longevity","volgt_uit":"temperature adjustment based on charge and discharge phases"}],"nieuwheid":{"n":2726,"cos":0.54,"leeshulp":"geen conclusie in het corpus komt dichtbij","conclusie":3,"dichtstbij":"US12155035B2"},"inventief":{"ok":true,"drempel":0.2,"getoetst":7,"gevonden":[]},"spanning":{"url":"https://capaciteitskaart.netbeheernederland.nl/","bron":"Netbeheer Nederland, capaciteitskaart (transportschaarste per provincie); CBS/ACM energie","meter":"netcongestie en energieopslag","lezing":"geen automatische lezing — de meter is publiek, de stand wordt met de hand gelezen","prefix":"H01M"},"model":"gpt-4o","materiaal_id":7967684,"aanvrager":{"naam":"J. 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Konstapel","adres":"Tunicaduin 11, Leiden"},"vingerafdruk":"6e20d6250e7315350cb0b6d339eeff34f39b7f6a8f5b51b6fc934793efd44696","via":null,"gemaakt":"2026-09-18T14:15:36.701Z"},{"id":3,"klasse":"H01M10/052","ronde":1,"tegenstelling":{"a":"capacity","b":"durability","n":8,"bewijs":[{"pub":"US20230108289A1","zin":"In addition, lithium iron phosphate monocrystal fully fills in gaps between the lithium iron phosphate secondary particles to further improve a compacted density of the plate and reduce a membrane resistance of the positive electrode plate, thereby improving p"},{"pub":"US12512452B2","zin":"The electrode plate of this application has good quality, and the electrochemical apparatus containing the electrode plate has a high energy density and a good electrical performance and long-term reliability."},{"pub":"US11824189B2","zin":"The anode compositions have improved structural integrity and capacity while reducing capacity fade due to cycling."},{"pub":"US11742474B2","zin":"The silicon-based blended graphite negative electrodes can be matched with positive electrodes comprising nickel rich lithium nickel manganese cobalt oxides to form high energy density cells with good cycling properties."}]},"snede":{"termen":["active material","current collector","negative electrode","positive electrode","secondary battery","material layer","layer disposed"],"drempel":0.2,"aanheffen":[{"n":11,"df":7.5,"kern":"electrochemical cell"},{"n":9,"df":6.1,"kern":"lithium secondary battery"},{"n":7,"df":4.8,"kern":"secondary battery"},{"n":5,"df":3.4,"kern":"electrolyte secondary battery"},{"n":4,"df":2.7,"kern":"positive-electrode material 3"},{"n":4,"df":2.7,"kern":"lithium ion cell"}]},"as":"schaal","eindfunctie":"Verhoogde capaciteit en duurzaamheid van een elektrode zonder gebruik van de snedetermen.","idee":"Gebruik van nanostructuren in het actieve materiaal voor betere ionendiffusie.","hoofdconclusie":"An electrode comprising an active material that includes nanostructures, wherein the nanostructures enhance ion diffusion within the active material, thereby increasing the electrode's capacity and durability.","boom":[{"kenmerk":"electrode","volgt_uit":null},{"kenmerk":"active material includes nanostructures","volgt_uit":"electrode"},{"kenmerk":"enhance ion diffusion within the active material","volgt_uit":"active material includes nanostructures"},{"kenmerk":"increased capacity and durability","volgt_uit":"enhance ion diffusion within the active material"}],"nieuwheid":{"n":1483,"cos":0.641,"leeshulp":"geen conclusie in het corpus komt dichtbij","conclusie":1,"dichtstbij":"US12107255B2"},"inventief":{"ok":false,"drempel":0.2,"getoetst":7,"gevonden":["active material"]},"spanning":{"url":"https://capaciteitskaart.netbeheernederland.nl/","bron":"Netbeheer Nederland, capaciteitskaart (transportschaarste per provincie); CBS/ACM energie","meter":"netcongestie en energieopslag","lezing":"geen automatische lezing — de meter is publiek, de stand wordt met de hand gelezen","prefix":"H01M"},"model":"gpt-4o","materiaal_id":null,"aanvrager":{"naam":"J. 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