ADOLPHE MERKLE INSTITUTE UNIV OF FRIBOURG has a total of 18 patent applications. It decreased the IP activity by 71.0%. Its first patent ever was published in 2015. It filed its patents most often in United States, WIPO (World Intellectual Property Organization) and EPO (European Patent Office). Its main competitors in its focus markets macromolecular chemistry and polymers, measurement and micro-structure and nano-technology are ECOLE SUPERIEURE PHYSIQUE & CHIMIE IND VILLE DE PARIS, MONOLYTHIX INC and HUBEI XINZONGKE VIRUS DISEASE ENGINEERING TECH CO LTD.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 6 | |
#2 | WIPO (World Intellectual Property Organization) | 6 | |
#3 | EPO (European Patent Office) | 4 | |
#4 | Canada | 1 | |
#5 | Republic of Korea | 1 |
# | Industry | |
---|---|---|
#1 | Macromolecular chemistry and polymers | |
#2 | Measurement | |
#3 | Micro-structure and nano-technology | |
#4 | Biotechnology | |
#5 | Chemical engineering | |
#6 | Basic materials chemistry | |
#7 | Machines |
# | Name | Total Patents |
---|---|---|
#1 | Weder Christoph | 7 |
#2 | Fink Alke | 5 |
#3 | Bonmarin Mathias | 5 |
#4 | Monnier Christophe A | 5 |
#5 | Geers Christoph | 5 |
#6 | Bruns Nico | 4 |
#7 | Rifaie Graham Omar | 4 |
#8 | Crippa Federica | 4 |
#9 | Simon Yoan C | 3 |
#10 | Pollard Jonas | 3 |
Publication | Filing date | Title |
---|---|---|
WO2020212526A1 | Method of production of controlled release silica nanoparticles for plant growth and/or defense enhancement | |
WO2020074399A1 | Oligonucleotide-based tuning of pore-forming peptides for increasing pore size, membrane affinity, stability, and antimicrobial activity | |
US2020407554A1 | Shape memory polymers | |
WO2019034597A1 | Force-responsive polymersomes and nanoreactors; processes utilizing the same | |
WO2018219610A1 | Method for characterizing particles producing heat when exposed to light and device for carrying out the method | |
WO2017198850A1 | Diagnostic methods for the detection and quantification of blood-related diseases | |
US2019154602A1 | Sample holder and lock-in thermography system with such | |
US2017081480A1 | Stimulus-responsive supramolecular glasses | |
US2019169495A1 | Optically upconverting liquid-filled polymeric materials | |
US2016334571A1 | Physiologically responsive mechanically adaptive polymer optical fibers, production and methods of use |