The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns with submicron features, in a straightforward, two-step process is presented. UV light exposure of a hydrogen-terminated silicon (100) surface coated with alkenes functionalized with N-hydroxysuccinimide ester groups resulted in the covalent attachment of the alkene as a monolayer on the surface. Submicron-scale patterning of surfaces was achieved by illumination with an interference pattern obtained by the transmission of 248 nm excimer laser light through a phase mask. The N-hydroxysuccinimide ester surface acted as a template for the subsequent covalent attachment of aminohexyl-modified DNA oligonucleotides. Oligonucleotide patterns, with...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
Silicon is an ideal substrate for the development of micro and nano bio-molecular sensor devices; th...
We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows ...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
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 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 method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
A procedure is developed to modify silicon surface by organic monolayer films with designed micromet...
A method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
A method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
A method for the reliable attachment. of oligonucleotides to silicon (10 0) surfaces in patterns is ...
There is a large interest in the use of the self-assembling properties of biomolecules in nanotechno...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
Silicon is an ideal substrate for the development of micro and nano bio-molecular sensor devices; th...
We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows ...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
The covalent attachment of DNA oligonucleotides onto crystalline silicon (100) surfaces, in patterns...
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 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 method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
A procedure is developed to modify silicon surface by organic monolayer films with designed micromet...
A method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
A method for the reliable attachment of oligonucleotides to silicon (1 0 0) surfaces in patterns is ...
A method for the reliable attachment. of oligonucleotides to silicon (10 0) surfaces in patterns is ...
There is a large interest in the use of the self-assembling properties of biomolecules in nanotechno...
Two photolithographic methods are described for the formation of patterned single or multiple DNA sp...
Silicon is an ideal substrate for the development of micro and nano bio-molecular sensor devices; th...
We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows ...