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UNIV ADAMA MICKIEWICZA

Overview
  • Total Patents
    290
  • GoodIP Patent Rank
    77,366
  • Filing trend
    ⇩ 95.0%
About

UNIV ADAMA MICKIEWICZA has a total of 290 patent applications. It decreased the IP activity by 95.0%. Its first patent ever was published in 1976. It filed its patents most often in Poland, EPO (European Patent Office) and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets environmental technology, organic fine chemistry and macromolecular chemistry and polymers are KUNMING INST OF PRECIOUS METAL, HUBEI SHUANGXIONG CATALYST CO LTD and ZHUO RUNSHENG.

Patent filings in countries

World map showing UNIV ADAMA MICKIEWICZAs patent filings in countries

Patent filings per year

Chart showing UNIV ADAMA MICKIEWICZAs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Marciniec Bogdan 101
#2 Urbaniak Wlodzimierz 31
#3 Gulinski Jacek 27
#4 Maciejewski Hieronim 23
#5 Wyrzykiewicz Elzbieta 17
#6 Foltynowicz Zenon 15
#7 Kownacki Ireneusz 14
#8 Hreczycho Grzegorz 13
#9 Szubert Karol 13
#10 Kedzia Bogdan 12

Latest patents

Publication Filing date Title
PL424866A1 Derivatives of colchicine, method for producing them and applications
PL424014A1 Corrosion protective agent
PL424017A1 Device for collecting samples of subaquatic sediments
PL424015A1 Corrosion protective agent
PL424016A1 Device for measuring structural features of frozen subaquatic sediment samples
PL424018A1 Bathing site at the cut-off part of water reservoirs and running waters for recreational purposes, and the system for feeding, purification and heating up of water
PL421916A1 New hydrazone complexes Cu(II) and their application in the process of oxygenation of primary alcohols
PL421891A1 Protein crystals Bacillus thuringiensis MPU B54 with insecticidal properties
PL421892A1 Insecticide composition of bacterial protein crystals Bacillus thuringiensis and carvacrol
PL421840A1 Germanium-functionalized trisubstituted trigermoxysilsesquioxanes with the structure of incompletely closed cage and the method for obtaining germanium-functionalized trisubstituted trigermoxysilsesquioxanes with the structure of incompletely closed cage
PL421841A1 New method for obtaining derivatives of silsesquioxanes (germasilsesquioxanes) with the structure of completely condensed cage with atoms of germanium built in the cage edges
PL421833A1 New disubstituted disiloxysilsesquioxanes with the structure of incompletely closed cage and the method for obtaining disubstituted disiloxysilsesquioxanes with the structure of incompletely closed cage
PL421835A1 New tetrasiloxy-substituted silsesquioxanes and the method for obtaining tetrasiloxy-substituted silsesquioxanes
PL421843A1 Method for obtaining germasilsesquioxanes
PL421839A1 Germanium-functionalized disubstituted digermoxysilsesquioxanes with the structure of incompletely closed cage and the method for obtaining germanium-functionalized disubstituted digermoxysilsesquioxanes with the structure of incompletely closed cage
PL421837A1 New method for obtaining monofunctionalized silsesquioxanes
PL421836A1 New derivatives of silsesquioxanes with a silicon atom built in the cage edge and new method for obtaining derivatives of silsesquioxanes with a silicon atom built in the cage edge
PL421832A1 New monosubstituted siloxysilsesquioksanes and method for obtaining monosubstituted siloxysilsesquioksanes
PL421842A1 Derivatives of silsesquioxanes with the structure of completely condensed cage and a germanium atom built in the cage edge and the method for obtaining derivatives of silsesquioxanes with the structure of completely condensed cage and a germanium atom built in the cage edge
PL421838A1 New germanium-functionalized mono-substituted (germoxy-substituted) silsequioxanes and method for obtaining germanium-functionalized mono-substituted (germoxy-substituted) silsequioxanes