We present a new concept for studies of the kinetics of fast gas–liquid reactions. The strategy relies on the microfluidic generation of highly monodisperse gas bubbles in the liquid reaction medium and subsequent analysis of time-dependent changes in bubble dimensions. Using reactions of CO<sub>2</sub> with secondary amines as an exemplary system, we demonstrate that the method enables rapid determination of reaction rate constant and conversion, and comparison of various binding agents. The proposed approach addresses two challenges in studies of gas–liquid reactions: a mass-transfer limitation and a poorly defined gas–liquid interface. The proposed strategy offers new possibilities in studies of the fundamental aspects of rapid multiphas...
International audienceWe present a new platform for the production and manipulation of microfluidic ...
A novel gas solid Micro Fluidized Bed Reaction Analyzer (MFBRA) was developed to deduce reaction rat...
The present paper describes a steady-state flow apparatus which permits the measurement of relative ...
We present a new concept for studies of the kinetics of fast gas–liquid reactions. The strategy reli...
A simple reactor model for predicting conversions in a micro-bubble column is described. It assumes ...
We present a new device for quantifying gases or gas mixtures based on the simple principle of bubbl...
We present a new fast real time and quantitative gas analysis method by means of mass spectrometry (...
To form many bulk chemicals, gaseous substances must be mixed and reacted with a continuous liquid p...
Our study illustrates the development of a microfluidics (MF) platform combining fluorescence micros...
The measurement and analysis of reaction behavior, kinetics quantification, and mechanism clarificat...
We present a strategy for preparing size-controlled gas-filled microparticles using two aqueous comp...
International audienceWe present a new microfluidic platform for the study of enzymtatic reactions u...
Gas-liquid reactions are of great industrial, biological, physiological, and ecological importance. ...
The article is focused on the aspects of using micro-catalytic pulse reactors for studying gas-phase...
Using high-resolution mass spectrometry, we have studied the synthesis of isoquinoline in a charged ...
International audienceWe present a new platform for the production and manipulation of microfluidic ...
A novel gas solid Micro Fluidized Bed Reaction Analyzer (MFBRA) was developed to deduce reaction rat...
The present paper describes a steady-state flow apparatus which permits the measurement of relative ...
We present a new concept for studies of the kinetics of fast gas–liquid reactions. The strategy reli...
A simple reactor model for predicting conversions in a micro-bubble column is described. It assumes ...
We present a new device for quantifying gases or gas mixtures based on the simple principle of bubbl...
We present a new fast real time and quantitative gas analysis method by means of mass spectrometry (...
To form many bulk chemicals, gaseous substances must be mixed and reacted with a continuous liquid p...
Our study illustrates the development of a microfluidics (MF) platform combining fluorescence micros...
The measurement and analysis of reaction behavior, kinetics quantification, and mechanism clarificat...
We present a strategy for preparing size-controlled gas-filled microparticles using two aqueous comp...
International audienceWe present a new microfluidic platform for the study of enzymtatic reactions u...
Gas-liquid reactions are of great industrial, biological, physiological, and ecological importance. ...
The article is focused on the aspects of using micro-catalytic pulse reactors for studying gas-phase...
Using high-resolution mass spectrometry, we have studied the synthesis of isoquinoline in a charged ...
International audienceWe present a new platform for the production and manipulation of microfluidic ...
A novel gas solid Micro Fluidized Bed Reaction Analyzer (MFBRA) was developed to deduce reaction rat...
The present paper describes a steady-state flow apparatus which permits the measurement of relative ...