A novel approach to pattern silanized-biomolecules directly onto glass (SiOx) substrates via Dip-Pen nanolithography (DPN) and microcontact printing (μCP) is presented. Subsequent hybridization reactions of DPN patterned silanized-DNA with its complementary strands provide “proof-of-concept” that the patterned oligonucleotides maintain their biological activities. The fabrication strategy does not require premodification of substrates and offers a cheap and robust way to immobilize molecules on electronically important semiconductor surfaces
We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows ...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
The progress in nanoscience is accelerating through the integration of different disciplines across ...
A novel approach to pattern silanized-biomolecules directly onto glass (SiOx) substrates via Dip-Pen...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
A procedure is developed to modify silicon surface by organic monolayer films with designed micromet...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
There is a large interest in the use of the self-assembling properties of biomolecules in nanotechno...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple b...
A method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple b...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2001.Includes...
We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows ...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
The progress in nanoscience is accelerating through the integration of different disciplines across ...
A novel approach to pattern silanized-biomolecules directly onto glass (SiOx) substrates via Dip-Pen...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
A procedure is developed to modify silicon surface by organic monolayer films with designed micromet...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
There is a large interest in the use of the self-assembling properties of biomolecules in nanotechno...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple b...
A method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
DNA biochip assays often require immobilization of bioactive molecules on solid surfaces. A simple b...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2001.Includes...
We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows ...
\u3cp\u3eFor the first time, a microchannel was photochemically patterned with a functional linker. ...
The progress in nanoscience is accelerating through the integration of different disciplines across ...