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Development of S‑Substituted Thioisothioureas as Efficient Hydropersulfide Precursors
American Chemical Society | 2018| -
N-SUBSTITUTED HYDROXAMIC ACIDS WITH CARBON-BASED LEAVING GROUPS AS EFFICIENT HNO DONORS AND USES THEREOF
Free accessEuropean Patent Office | 2021| -
N-substituted hydroxamic acids with carbon-based leaving groups as efficient HNO donors and uses thereof
Free accessEuropean Patent Office | 2020| -
N-SUBSTITUTED HYDROXAMIC ACIDS WITH CARBON-BASED LEAVING GROUPS AS EFFICIENT HNO DONORS AND USES THEREOF
Free accessEuropean Patent Office | 2018| -
N-SUBSTITUTED HYDROXAMIC ACIDS WITH CARBON-BASED LEAVING GROUPS AS EFFICIENT HNO DONORS AND USES THEREOF
Free accessEuropean Patent Office | 2016| -
MELDRUM'S ACID, BARBITURIC ACID AND PYRAZOLONE DERIVATIVES SUBSTITUTED WITH HYDROXYLAMINE AS HNO DONORS
Free accessEuropean Patent Office | 2019| -
Meldrum's acid, barbituric acid and pyrazolone derivatives substituted with hydroxylamine as HNO donors
Free accessEuropean Patent Office | 2018| -
Reaction of Nitroxyl (HNO) with Hydrogen Sulfide and Hydropersulfides
American Chemical Society | 2021| -
MELDRUM'S ACID, BARBITURIC ACID AND PYRAZOLONE DERIVATIVES SUBSTITUTED WITH HYDROXYLAMINE AS HNO DONORS
Free accessEuropean Patent Office | 2017| -
MELDRUM'S ACID, BARBITURIC ACID AND PYRAZOLONE DERIVATIVES SUBSTITUTED WITH HYDROXYLAMINE AS HNO DONORS
Free accessEuropean Patent Office | 2017| -
Controlled HNO release through intramolecular cyclization-elimination
Free accessEuropean Patent Office | 2017| -
N-substituted hydroxylamine derivatives with carbon-based leaving groups
Free accessEuropean Patent Office | 2016| -
N-SUBSTITUTED HYDROXYLAMINE DERIVATIVES WITH CARBON-BASED LEAVING GROUPS
Free accessEuropean Patent Office | 2016|
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