We have developed a new procedure for efficient combing of DNA on a silicon substrate, which allows reproducible deposition and alignment of DNA molecules across lithographically defined patterns. The technique involves surface modification of Si/SiO2 substrates with a hydrophobic silane by using gas-phase deposition. Thereafter, DNA molecules are aligned by dragging the droplet on the hydrophobic substrate with a pipette tip. Using this procedure, DNA molecules were stretched to an average value of 122% of their contour length. Furthermore, we demonstrated combing of ca. 900 nm long stretches of genomic DNA across nanofabricated electrodes, which was not possible by using other available combing methods. Similar results were also obtained ...
A new patterning method using Deoxyribose Nucleic Acid (DNA) strands capable of producing nanogaps o...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
International audienceOne of the challenges in the development of molecular scale devices is the int...
A reliable method of deposition of aligned individual dsDNA molecules on mica, silicon, and micro/na...
International audienceOne of the challenges in the development of molecular scale devices is the int...
International audienceOne of the challenges in the development of molecular scale devices is the int...
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 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...
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...
In the present paper we draw a simple and robust method to realize highly ordered arrays of stretche...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
A new patterning method using Deoxyribose Nucleic Acid (DNA) strands capable of producing nanogaps o...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
International audienceOne of the challenges in the development of molecular scale devices is the int...
A reliable method of deposition of aligned individual dsDNA molecules on mica, silicon, and micro/na...
International audienceOne of the challenges in the development of molecular scale devices is the int...
International audienceOne of the challenges in the development of molecular scale devices is the int...
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 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...
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...
In the present paper we draw a simple and robust method to realize highly ordered arrays of stretche...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...
A new patterning method using Deoxyribose Nucleic Acid (DNA) strands capable of producing nanogaps o...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
A method is presented for the covalent attachment of oligonucleotides to silicon (100) surfaces patt...