The ability to locally modify the inside of microfluidic channels with bioactive molecules is of ever-rising relevance. In this article, we show the direct photochemical coupling of a <i>N</i>-hydroxysuccinimide-terminated ω-alkene onto hydrogen-terminated silicon oxide, and its subsequent functionalization with a catalytically active DNAzyme. To achieve this local attachment of a DNAzyme, we prepared hydrogen-phenyl-terminated glass (H-Φ-glass) by the reaction of glass with H-SiPhCl<sub>2</sub>. The presence of a radical-stabilizing substituent on the Si atom (i.e., phenyl) enabled the covalent modification of bare glass substrates and of the inside of glass microchannels with a functional organic monolayer that allowed direct reaction wit...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
A three-enzyme cascade reaction was successfully realized in a continuous flow microreactor. The fir...
A three-enzyme cascade reaction was successfully realized in a continuous flow microreactor. The fir...
The ability to locally modify the inside of microfluidic channels with bioactive molecules is of eve...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
<p>The ability to locally functionalize the surface of glass allows for myriad biomedical and chemic...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
The ability to locally modify the inside of microfluidic channels with functional groups that allow ...
The ability to locally modify the inside of microfluidic channels with functional groups that allow ...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
The ability to locally functionalize the surface of glass and polymers allows for myriad biomedical ...
The ability to locally functionalize the surface of glass and polymers allows for myriad biomedical ...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
A three-enzyme cascade reaction was successfully realized in a continuous flow microreactor. The fir...
A three-enzyme cascade reaction was successfully realized in a continuous flow microreactor. The fir...
The ability to locally modify the inside of microfluidic channels with bioactive molecules is of eve...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
<p>The ability to locally functionalize the surface of glass allows for myriad biomedical and chemic...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
The ability to locally modify the inside of microfluidic channels with functional groups that allow ...
The ability to locally modify the inside of microfluidic channels with functional groups that allow ...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
The ability to locally functionalize the surface of glass allows for myriad biomedical and chemical ...
The ability to locally functionalize the surface of glass and polymers allows for myriad biomedical ...
The ability to locally functionalize the surface of glass and polymers allows for myriad biomedical ...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
For the first time, it microchannel was photochemically patterned with it functional linker. This si...
A three-enzyme cascade reaction was successfully realized in a continuous flow microreactor. The fir...
A three-enzyme cascade reaction was successfully realized in a continuous flow microreactor. The fir...