Japanese Patent Intelligence

Industry: Advanced Materials

452 patents
国立研究開発法人科学技術振興機構 ★ S Rank

Oxynitride Hydride, Metal Carrier Containing Oxynitride Hydride, and Catalyst for Ammoni…

This technology introduces a novel perovskite-type oxynitride hydride material that functions as a highly efficient and stable catalyst for ammonia synthes…

Chemistry & Pharma Advanced Materials Manufacturing

Green Ammonia: New Catalyst Boosts Productivity 1.5x, Cuts Energy 25%

~$1.5M/year estimated energy cost savings per facility (est.).

国立研究開発法人科学技術振興機構 ★ S Rank

Electrode Catalyst and Method for Manufacturing Amine Compounds

This technology introduces novel electrode catalysts made from abundant metals for electrochemical amine synthesis. It eliminates expensive noble metals an…

Advanced Materials

1.5× Productivity, ~33% Cost Reduction with Sustainable Amine Synthesis

~$1.0M/year estimated raw material cost reduction per facility (est.)

公立大学法人福島県立医科大学 ★ S Rank

Method for Producing Cultured Cells

This technology streamlines genome-edited cell production by enabling rapid, marker-free selection of desired cells from colonies. It utilizes single-nucle…

Life Sciences Inspection & Detection Advanced Materials

5x Faster Genome-Edited Cell Selection, Marker-Free for Enhanced Safety

~$200K/year estimated cost savings per facility (est.)

国立大学法人山梨大学 ★ S Rank

Solid Oxide Electrolysis Cell, Its Operating Method, and Operating System

This technology introduces an innovative operating method and catalyst layer for Solid Oxide Electrolysis Cells (SOEC), significantly reducing hydrogen ele…

Advanced Materials

SOEC Degradation Cut 70%, Boosting Uptime 20% for Green Hydrogen

~$200K/year estimated maintenance cost reduction per facility (est.)

国立大学法人東海国立大学機構 ★ S Rank

Zirconia Nanoparticle Material, Gas Treatment Catalyst, and Manufacturing Method Thereof

This technology utilizes precisely controlled zirconia nanoparticles with specific crystal phases and unique shapes, enabling superior catalytic activity, …

Advanced Materials Manufacturing

2× Gas Treatment Efficiency: Nano-Zirconia Catalysts Cut Costs by ~15%

~$1M/year estimated environmental cost reduction and productivity improvement per facility (est.).

国立大学法人信州大学 ★ S Rank

Lithium Composite Oxide, Electrode Active Material for Secondary Batteries, Secondary Ba…

This technology features a novel spinel lithium composite oxide, enhancing secondary battery performance. It precisely controls A-atom coordination and sur…

Chemistry & Pharma Advanced Materials Electronics

Next-Gen EV Batteries: 1.5x Cycle Life, ~20% Cost Savings

~$1.5M/year estimated battery life extension benefit per EV manufacturer (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Drug Delivery Composition

This technology uses novel acid-resistant cells to encapsulate and protect drugs from stomach acid, ensuring efficient delivery to the intestines. It signi…

Life Sciences Advanced Materials

Acid-Resistant Cells Double Drug Delivery Efficiency to Gut

~$1.0M/year estimated formulation cost reduction per facility (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Nucleic Acid Binding Protein

This technology introduces a novel nucleic acid binding protein featuring a TAL-repeat DNA binding domain, enabling sequence-independent detection of open …

Life Sciences Advanced Materials

Boost R&D 20% with Sequence-Free Chromatin Detection

~$250K/year estimated R&D cost reduction per facility (est.)

国立研究開発法人物質・材料研究機構 ★ S Rank

Nitrogen Gas Sustained Release Agent and System, Including Breathing Apparatus and Packa…

This technology uses layered double hydroxides to safely release nitrogen gas at room temperature, eliminating hazardous high-pressure cylinders. It provid…

Chemistry & Pharma Advanced Materials Manufacturing

Safe Nitrogen Release: Cuts OpEx ~$330K/yr, Boosts Safety 20%

~$350K/year estimated economic benefit per facility (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Ionic Solid

This technology introduces novel porous ionic solids with precisely engineered void structures. These materials selectively capture and transport specific …

Advanced Materials Manufacturing

Porous Ionic Solids Boost Performance 1.5x, Cut CO2 Capture Costs

~$1.0M/year estimated operational cost reduction per facility (est.)

大学共同利用機関法人自然科学研究機構 ★ S Rank

Method for Manufacturing Optical Elements and Optical Element

This technology precisely bonds optical elements via a low-temperature crystallization process, stabilizing material states and minimizing internal stress.…

AI & Software Electronics Advanced Materials

Up to 80% More Stable Optics, 20% Lower Manufacturing Cost

~$1M/year estimated economic impact per facility (est.).

国立研究開発法人物質・材料研究機構 ★ S Rank

Porous Carbon Structure for Cathodes, Manufacturing Method, and Battery Applications

This technology introduces an advanced porous carbon structure optimized for lithium-air battery cathodes. It achieves significantly higher energy density …

Chemistry & Pharma Advanced Materials Electronics

Next-Gen Batteries: 1.5x Energy Density, 20% Lighter Cathodes

~$6.5M/year estimated additional revenue per facility (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Zeolite Sheet-like Particles and Method for Producing the Same

This technology produces unique zeolite nanosheets with specific structures (PHI, SOD) and precise dimensions (1-100nm thick, aspect ratio >100). It offers…

Chemistry & Pharma Advanced Materials Manufacturing

5x Faster Zeolite Nanosheet Production Boosts Catalytic Efficiency by 20%

~$1.5M/year estimated material cost and development time reduction per facility (est.)

TPR株式会社 ★ S Rank

Current Collector for Energy Storage Device Electrodes, Its Manufacturing Method, and En…

This technology features an advanced current collector for energy storage devices, utilizing an amorphous carbon film with precisely controlled sp2 carbon …

Advanced Materials Electronics Manufacturing

2x Energy Storage Performance: Accelerating Next-Gen Devices

~$2M/year estimated energy cost reduction potential per facility (est.)

国立研究開発法人物質・材料研究機構 ★ S Rank

Chlorine Dioxide Gas Sustained-Release Agent, Packaging, Method, and Apparatus

This technology utilizes a layered double hydroxide and a solid reactant to continuously release chlorine dioxide gas without external power. It provides e…

Chemistry & Pharma Advanced Materials Manufacturing

Power-Free Disinfection: ~$200K Annual Cost Cut, 14-Year Exclusivity

~$200K/year estimated hygiene management cost reduction (est.)

国立研究開発法人物質・材料研究機構 ★ S Rank

Chlorine Dioxide Gas Sustained-Release Agent, Packaging, Release Method, and Device

This technology uses layered double hydroxides to encapsulate chlorite ions, enabling stable, sustained release of chlorine dioxide gas without external po…

Chemistry & Pharma Advanced Materials Manufacturing

Autonomous Disinfection: ~30% Cost Savings, No Power Needed

~$200K/year estimated sterilization cost reduction per facility (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Method for Producing Metal Oxyhydrides, Metal Oxyhydrides, and Ammonia Synthesis Method …

This technology provides an efficient method to synthesize novel metal oxyhydrides under mild conditions, which act as superior catalysts for ammonia produ…

Chemistry & Pharma Advanced Materials Manufacturing

Ammonia Synthesis Boosted by 20%, Production Costs Cut by ~30%

~$16.5M/year estimated cost reduction per facility (est.)

国立研究開発法人物質・材料研究機構 ★ S Rank

Magnetic Refrigeration Module, Magnetic Refrigeration System, and Cooling Method

This magnetic refrigeration module uses a novel superimposed magnetic field to maximize cooling capacity without fluorocarbons. It offers up to 15% higher …

Advanced Materials Electronics Manufacturing

Fluorocarbon-Free Cooling: Up to 15% Energy Savings, Zero Environmental Impact

~$200K/year estimated electricity cost reduction per facility (est.)

国立大学法人京都大学 ★ S Rank

Alloy Nanoparticles, Aggregates Thereof, Catalysts, and Method for Producing Alloy Nanop…

This technology utilizes multi-element alloy nanoparticles (5+ elements) to achieve high-efficiency and high-selectivity catalysis. Compatible with diverse…

Advanced Materials Electronics Manufacturing

5-Element Nanoparticles Boost Catalyst Efficiency by 1.5x, Cut Costs 20%

~$1M/year estimated manufacturing cost reduction per facility (est.)

国立大学法人京都大学 ★ S Rank

Intracellular Delivery Peptide Complex

This technology offers an innovative peptide complex for efficient and safe intracellular delivery of therapeutic substances like nucleic acids, proteins, …

Life Sciences Advanced Materials

3x Cell Delivery Efficiency, ~20% Faster Drug Development

~$5M/year estimated opportunity cost reduction per company (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Primer, Double-Stranded DNA Manufacturing Apparatus, and Double-Stranded DNA Manufacturi…

This technology introduces a novel primer with a degradable protecting group, enabling precise single-strand DNA cleavage and efficient double-stranded DNA…

Advanced Materials Manufacturing Life Sciences

Precision DNA Cleavage: Reduces Manufacturing Costs by ~30% for Bio-Production

~$0.2M/year estimated DNA manufacturing cost reduction per facility (est.)

国立研究開発法人科学技術振興機構 ★ S Rank

Primer, Apparatus, and Method for Producing Double-Stranded DNA Using the Same

This technology introduces a novel primer with a degradable protecting group, enabling high-efficiency, low-cost DNA synthesis, especially for sticky-end d…

Life Sciences Manufacturing Advanced Materials

Boost DNA Synthesis Efficiency by 20%, Cut R&D Costs by ~30%

~$250K/year estimated R&D cost reduction per facility (est.)

国立研究開発法人農業・食品産業技術総合研究機構 ★ S Rank

Novel Food Ingredients and Processing Restoration Method

This technology processes underutilized agricultural, livestock, and marine by-products into standardized food ingredient cartridges. It significantly redu…

Life Sciences Advanced Materials

Cuts food waste by up to 50%, unlocks new $1.5M/year revenue streams

~$1.5M/year estimated economic impact per facility (est.)

国立研究開発法人物質・材料研究機構 ★ S Rank

Precursor for Nb3Sn Superconducting Wire, Method for Manufacturing the Same, and Method …

This technology introduces an advanced precursor for Nb3Sn superconductors, featuring zinc (Zn) and titanium (Ti) additives. These elements optimize Nb3Sn …

Advanced Materials Electronics Manufacturing

Next-Gen Nb3Sn Superconductors: 20% Higher Critical Current Density

~$1M/year estimated material cost reduction per facility (est.)