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Bis[ N , N ′-(2-indanolyl)]-1,5-diazacyclooctane as Unique Metal Ligand: Self-Assembly of Palladium Nanoparticles and Catalytic Reactivity on C–C Bond Formation-diazacyclooctane-palladium(II) complex was synthesized using bis[ N , N ′-(2-indanolyl)]-1,5-diazacyclooctane

Microfluidic Mixing of Polyamine with Acrolein Enables the Detection of the [4+4] Polymerization of Intermediary Unsaturated Imines: The Properties of a Cytotoxic 1,5-Diazacyclooctane Hydrogel the soluble diazacyclooctane polymers. The polymerization reaction ultimately gave an insoluble cationic

Bis[ N , N ′-(2-indanolyl)]-1,5-diazacyclooctane as Unique Metal Ligand: Self-Assembly of Palladium Nanoparticles and Catalytic Reactivity on C–C Bond Formation-diazacyclooctane-palladium(II) complex was synthesized using bis[ N , N ′-(2-indanolyl)]-1,5-diazacyclooctane

Microfluidic Mixing of Polyamine with Acrolein Enables the Detection of the [4+4] Polymerization of Intermediary Unsaturated Imines: The Properties of a Cytotoxic 1,5-Diazacyclooctane Hydrogel. Microfluidic mixing was used to gradually form the soluble diazacyclooctane polymers. The polymerization

Microfluidic Mixing of Polyamine with Acrolein Enables the Detection of the [4+4] Polymerization of Intermediary Unsaturated Imines: The Properties of a Cytotoxic 1,5-Diazacyclooctane Hydrogel the soluble diazacyclooctane polymers. The polymerization reaction ultimately gave an insoluble cationic

Polyamine modification by acrolein exclusively produces 1,5-diazacyclooctanes: A previously unrecognized mechanism for acrolein-mediated oxidative stress oxidase, were then found to react with acrolein to produce 1,5-diazacyclooctane, a previously unrecognized

Inhibition of amyloid formation of amyloid β (1–42), amylin and insulin by 1,5-diazacyclooctanes, a spermine-acrolein conjugate reacts with polyamines, such as spermine, and produces 1,5-diazacyclooctane, such as cyclic spermine (c

Polyamine modification by acrolein exclusively produces 1,5-diazacyclooctanes: A previously unrecognized mechanism for acrolein-mediated oxidative stress oxidase, were then found to react with acrolein to produce 1,5-diazacyclooctane, a previously unrecognized

Microfluidic Mixing of Polyamine with Acrolein Enables the Detection of the [4+4] Polymerization of Intermediary Unsaturated Imines: The Properties of a Cytotoxic 1,5-Diazacyclooctane Hydrogel. Microfluidic mixing was used to gradually form the soluble diazacyclooctane polymers. The polymerization

Unrecognized Cycloaddition Reactions of N-Alkyl-α,β-Unsaturated Imines Occurring in Biosystems and Their Biological Roles), alkylamines (e.g., amino-alcohols or diamines), and formaldehyde to produce 1,5-diazacyclooctanes

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