The Experts below are selected from a list of 15738 Experts worldwide ranked by ideXlab platform
Yasuhisa Omura - One of the best experts on this subject based on the ideXlab platform.
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blockade and staircase phenomena of holes in Mesoscopic Scale lambda deoxyribonucleic acid sio 2 si structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
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Blockade and Staircase Phenomena of Holes in Mesoscopic Scale $\lambda $ -Deoxyribonucleic Acid/SiO 2 /Si Structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
Naoto Matsuo - One of the best experts on this subject based on the ideXlab platform.
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blockade and staircase phenomena of holes in Mesoscopic Scale lambda deoxyribonucleic acid sio 2 si structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
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Blockade and Staircase Phenomena of Holes in Mesoscopic Scale $\lambda $ -Deoxyribonucleic Acid/SiO 2 /Si Structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
Mariano Venanzi - One of the best experts on this subject based on the ideXlab platform.
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hierarchical transfer of chiral information from the molecular to the Mesoscopic Scale by langmuir blodgett deposition of tetrasteroid porphyrins
New Journal of Chemistry, 2017Co-Authors: Raffaella Lettieri, Lenka Cardová, Emanuela Gatto, Claudia Mazzuca, Donato Monti, Antonio Palleschi, Ernesto Placidi, Pavel Drašar, Mariano VenanziAbstract:Chiral Mesoscopic structures were obtained by Langmuir–Blodgett (LB) deposition of two tetrasteroid-porphyrins differing by the number of hydroxy groups functionalizing the steroid rings. The morphology of the porphyrin aggregates was characterized by spectroscopy (UV-Vis absorption, steady-state fluorescence, circular dichroism) and microscopy (fluorescence, scanning electrons, atomic force) techniques. Molecular Mechanics calculations were also carried out to analyze the hierarchical self-assembly process leading to the propagation of the structural properties of the tetrasteroid-porphyrin building blocks to the Mesoscopic Scale of the imaged chiral architectures. It has been found that, while the transfer of chiral information from the molecular to the nanoScale is determined by the winding of the tetrasteroid chains functionalizing the porphyrin scaffold, the morphology of the Mesoscopic aggregates (rods or twisted ribbons) is determined by the amphiphilic (rods) or hydrophobic (ribbons) character of the outer surface of the interacting porphyrin nanostructures.
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Hierarchical transfer of chiral information from the molecular to the Mesoscopic Scale by Langmuir–Blodgett deposition of tetrasteroid-porphyrins
New Journal of Chemistry, 2017Co-Authors: Raffaella Lettieri, Lenka Cardová, Emanuela Gatto, Claudia Mazzuca, Donato Monti, Antonio Palleschi, Ernesto Placidi, Pavel Drašar, Mariano VenanziAbstract:Chiral Mesoscopic structures were obtained by Langmuir–Blodgett (LB) deposition of two tetrasteroid-porphyrins differing by the number of hydroxy groups functionalizing the steroid rings. The morphology of the porphyrin aggregates was characterized by spectroscopy (UV-Vis absorption, steady-state fluorescence, circular dichroism) and microscopy (fluorescence, scanning electrons, atomic force) techniques. Molecular Mechanics calculations were also carried out to analyze the hierarchical self-assembly process leading to the propagation of the structural properties of the tetrasteroid-porphyrin building blocks to the Mesoscopic Scale of the imaged chiral architectures. It has been found that, while the transfer of chiral information from the molecular to the nanoScale is determined by the winding of the tetrasteroid chains functionalizing the porphyrin scaffold, the morphology of the Mesoscopic aggregates (rods or twisted ribbons) is determined by the amphiphilic (rods) or hydrophobic (ribbons) character of the outer surface of the interacting porphyrin nanostructures.
Tadao Takada - One of the best experts on this subject based on the ideXlab platform.
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blockade and staircase phenomena of holes in Mesoscopic Scale lambda deoxyribonucleic acid sio 2 si structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
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Blockade and Staircase Phenomena of Holes in Mesoscopic Scale $\lambda $ -Deoxyribonucleic Acid/SiO 2 /Si Structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
Akira Heya - One of the best experts on this subject based on the ideXlab platform.
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blockade and staircase phenomena of holes in Mesoscopic Scale lambda deoxyribonucleic acid sio 2 si structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.
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Blockade and Staircase Phenomena of Holes in Mesoscopic Scale $\lambda $ -Deoxyribonucleic Acid/SiO 2 /Si Structure
IEEE Electron Device Letters, 2016Co-Authors: Naoto Matsuo, Tadao Takada, Akira Heya, Kazushige Yamana, Tadashi Sato, Shin Yokoyama, Yasuhisa OmuraAbstract:Coulomb blockade/staircase phenomena of deoxyribonucleic acid (DNA) molecule have been observed so far. Here, we show a non-Coulomb blockade/staircase phenomenon of holes in a Mesoscopic Scale $\lambda $ -DNA, which serves as a channel on SiO2/Si structure. It is considered that the phenomena are due to the penetration of the wave function in the DNA into the Si source and drain electrodes via the contacts constructed by DNA/allyl glycidyl ether/Si electrodes.