Inventor · disambiguated record
Joachim P. Spatz
Also filed as: SPATZ JOACHIM · SPATZ JOACHIM P
16 granted patents·25 pending applications·71 citations·filing 2004–2023
89Inventor score
Top patents by PatentIndex Score
41 records- 0188US9352278B2Substrate surface structured with thermally stable metal alloy nanoparticles, a method for preparing the same and uses thereof, in particular as a catalystSPATZ JOACHIM P·Filed 2012·Granted May 31, 2016·18 cites·15 claims
- 0285US7655383B2Photochemical method for manufacturing nanometrically surface-decorated substratesDWI an der RWTH·Filed 2006·Granted Feb 2, 2010·38 cites·14 claims
- 0381US9169566B2Method for spatially resolved enlargement of nanoparticles on a substrate surfaceMORHARD CHRISTOPH·Filed 2010·Granted Oct 27, 2015·4 cites·16 claims
- 0471US9469526B2Method for the production of conical nanostructures on substrate surfacesMORHARD CHRISTOPH·Filed 2010·Granted Oct 18, 2016·5 cites·13 claims
- 0569US2024159733A1Tunable neuronal network and an artificial eyeMAX PLANCK GESELLSCHAFT·Filed 2023·Application pending·0 cites
- 0668US10987728B2Apparatus and method of manufacturing metallic or inorganic strands having a thickness in the micron range by melt spinningMAX PLANCK GESELLSCHAFT·Filed 2015·Granted Apr 27, 2021·1 cites·17 claims
- 0766US8257798B2Method for the creation of extensive variations in size or distance in nanostructure patterns on surfacesSPATZ JOACHIM P·Filed 2008·Granted Sep 4, 2012·2 cites·21 claims
- 0861US12497423B2Site-specific, kinetically inert conjugation of labels and/or carriers to target molecules such as his-tagged proteins via metal complex reagentsMAX PLANCK GESELLSCHAFT·Filed 2020·Granted Dec 16, 2025·0 cites·15 claims
- 0960US8192668B2Structuring method and component with a structured surfaceSPATZ JOACHIM·Filed 2007·Granted Jun 5, 2012·3 cites·30 claims
- 1057US12497422B2Site-specific, kinetically inert conjugation of labels and/or carriers to target molecules such as His-tagged proteins via metal complex reagentsMAX PLANCK GESELLSCHAFT·Filed 2020·Granted Dec 16, 2025·0 cites·13 claims
- 1155US2024274790A1Method of producing an electrode, electrode, dry coating composition, battery and electronic circuitMAX PLANCK GESELLSCHAFT·Filed 2022·Application pending·0 cites
- 1255US2024367228A1Network of metal fibers and method of assembling a fiber networkMAX PLANCK GESELLSCHAFT·Filed 2022·Application pending·0 cites
- 1353US9789458B2Highly ordered arrays of micelles or nanoparticles on a substrate surface and methods for producing the sameMAX-PLANCK-GESELLSCHAFT ZUR FOERDERUNG DER WSS E V·Filed 2013·Granted Oct 17, 2017·0 cites·13 claims
- 1453US7851056B2Ultralyophobe interfacesUNIV FLORIDA·Filed 2005·Granted Dec 14, 2010·0 cites·23 claims
- 1550US11980932B2Method of producing metal strands and apparatus for producing metal strandsMAX PLANCK GESELLSCHAFT·Filed 2020·Granted May 14, 2024·0 cites·29 claims
- 1650US2011284820A1Nanowires on substrate surfaces, method for producing same and use thereofKUDERA STEFAN·Filed 2009·Application pending·0 cites
- 1750US2024421320A1Lithium metal electrode, method of manufacturing a lithium ion electrode and lithium ion batteryMAX PLANCK GESELLSCHAFT·Filed 2021·Application pending·0 cites
- 1847US2022008880A1Surfactant-stabilized fluid interface and dispersion comprising one or more droplets having a surfactant stabilized fluid interfaceMAX PLANCK GESELLSCHAFT·Filed 2019·Application pending·0 cites
- 1947US2023292480A1Composite material and shielding against electromagnetic radiationMAX PLANCK GESELLSCHAFT·Filed 2021·Application pending·0 cites
- 2047US2024274832A1Electrode and batteryMAX PLANCK GESELLSCHAFT·Filed 2021·Application pending·0 cites
- 2145US12489135B2Network of metal fibers, method for producing a network of metal fibers, electrode and batteryMAX PLANCK GESSELLSCHAFT ZUR FOERDERUNG DER WISSENCHAFTEN E V·Filed 2019·Granted Dec 2, 2025·0 cites·12 claims
- 2245US2011275539A1Substrate for selecting and specifically influencing the function of cellsMAX PLANCK GESELLSCHAFT·Filed 2009·Application pending·0 cites
- 2345US2012034493A1Electrode device, generator device and method for power generation by means of membrane-potential shuntingSPATZ JOACHIM·Filed 2009·Application pending·0 cites
- 2444US2024024805A1FilterMAX PLANCK GESELLSCHAFT·Filed 2021·Application pending·0 cites
- 2543US2018164279A1Tunable neuronal network and an artificial eyeMAX PLANCK GESELLSCHAFT·Filed 2017·Application pending·0 cites
- 2642US2023271250A1Nozzle and method for forming microdropletsMAX PLANCK GESELLSCHAFT·Filed 2021·Application pending·0 cites
- 2740US2017291361A1Methods for preparing and orientating biopolymer nanofibres and a composite material comprising the sameRAOUFI MOHAMMAD·Filed 2015·Application pending·0 cites
- 2840US2024222641A1Method for optimizing material properties of components of a battery, manufacturing a fiber network, an electrode and a batteryMAX PLANCK GESELLSCHAFT·Filed 2021·Application pending·0 cites
- 2939US10898619B2Intraocular device and method for preparing the sameMAX PLANCK GESELLSCHAFT·Filed 2016·Granted Jan 26, 2021·0 cites·15 claims
- 3039US2023038598A1Microfluidic production of biofunctionalized giant unilamellar vesicles for targeted cargo deliveryMAX PLANCK GESELLSCHAFT ZUR FOERDERUNG DE WSS E V·Filed 2020·Application pending·0 cites
- 3139US2005031793A1Stellate prepolymers for the production of ultra-thin coatings that form hydrogelsFiled 2004·Application pending·0 cites
- 3238US2013284690A1Process for producing highly ordered nanopillar or nanohole structures on large areasMORHARD CHRISTOPH·Filed 2011·Application pending·0 cites
- 3338US2010103524A1Method for producing an anti-reflection surface on an optical element, and optical elements comprising an anti-reflection surfaceZEISS CARL AG·Filed 2008·Application pending·0 cites
- 3438US2009181315A1Production of micro- and nanopore mass arrangements by self-organization of nanoparticles and sublimation technologyMAX PLANCK GESELLSCHAFT·Filed 2007·Application pending·0 cites
- 3537US2018050959A1Fabrication of nanostructures in and on organic and inorganic substrates using mediating layersMAX PLANCK GESELLSCHAFT·Filed 2015·Application pending·0 cites
- 3635US11014147B2Apparatus and method of manufacturing metallic or inorganic fibers having a thickness in the micron range by melt spinningMAX PLANCK GESELLSCHAFT·Filed 2016·Granted May 25, 2021·0 cites·16 claims
- 3735US2015322277A1A method for preparing polystyrene-stabilized nanoparticles and nanostructured substrate surfaces comprising the same as well as the nanostructured substrate surfaces as such and uses thereofSPATZ JOACHIM P·Filed 2012·Application pending·0 cites
- 3835US2018237291A1Fabrication of nanostructured substrates comprising a plurality of nanostructure gradients on a single substrateMAX PLANCK GESELLSCHAFT·Filed 2016·Application pending·0 cites
- 3935US2010318187A1Surface-structured polyurethane substrates and methods for producing the sameMAX PLANCK GESELLSCHAFT·Filed 2010·Application pending·0 cites
- 4033US11389408B2Method for preparing a functional synthetic cell in form of a giant unilamellar vesicleMAX PLANCK GESELLSCHAFT·Filed 2018·Granted Jul 19, 2022·0 cites·18 claims
- 4128US2013236881A1Three-dimensional metal-coated nanostructures on substrate surfaces, method for producing same and use thereofSPATZ JOACHIM P·Filed 2011·Application pending·0 cites
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Identity basis: PatentsView inventor disambiguation (2025Q4-odp release). How scoring works →