Search Results - "Sanchez, Oriol Lopez"
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1
Highly Oriented Atomically Thin Ambipolar MoSe2 Grown by Molecular Beam Epitaxy
Published in ACS nano (27-06-2017)“…Transition metal dichalcogenides (TMDCs), together with other two-dimensional (2D) materials, have attracted great interest due to the unique optical and…”
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2
Valley Polarization by Spin Injection in a Light-Emitting van der Waals Heterojunction
Published in Nano letters (14-09-2016)“…The band structure of transition metal dichalcogenides (TMDCs) with valence band edges at different locations in the momentum space could be harnessed to build…”
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3
Light Generation and Harvesting in a van der Waals Heterostructure
Published in ACS nano (25-03-2014)“…Two-dimensional (2D) materials are a new type of materials under intense study because of their interesting physical properties and wide range of potential…”
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4
Large-Area Epitaxial Monolayer MoS2
Published in ACS nano (28-04-2015)“…Two-dimensional semiconductors such as MoS2 are an emerging material family with wide-ranging potential applications in electronics, optoelectronics, and…”
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5
Ultrasensitive photodetectors based on monolayer MoS2
Published in Nature nanotechnology (01-07-2013)“…Two-dimensional materials are an emerging class of new materials with a wide range of electrical properties and potential practical applications. Although…”
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6
Ultrasensitive photodetectors based on monolayer MoS2
Published in Nature nanotechnology (09-06-2013)Get full text
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7
Optospintronics in Graphene via Proximity Coupling
Published in ACS nano (28-11-2017)“…The observation of micrometer size spin relaxation makes graphene a promising material for applications in spintronics requiring long-distance spin…”
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8
Valley Polarization by Spin Injection in a Light-Emitting van der Waals Heterojunction
Published 05-09-2016“…The band structure of transition metal dichalcogenides (TMDCs) with valence band edges at different locations in the momentum space could be harnessed to build…”
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9
Optospintronics in graphene via proximity coupling
Published 29-05-2017“…ACS Nano, 2017 The observation of micron size spin relaxation makes graphene a promising material for applications in spintronics requiring long distance spin…”
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10
Highly Oriented Atomically Thin Ambipolar MoSe 2 Grown by Molecular Beam Epitaxy
Published in ACS nano (27-06-2017)“…Transition metal dichalcogenides (TMDCs), together with other two-dimensional (2D) materials, have attracted great interest due to the unique optical and…”
Get full text
Journal Article -
11
Ultrasensitive photodetectors based on monolayer MoS sub(2)
Published in Nature nanotechnology (01-07-2013)“…Two-dimensional materials are an emerging class of new materials with a wide range of electrical properties and potential practical applications. Although…”
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Journal Article -
12
Large-Area Epitaxial Monolayer MoS 2
Published in ACS nano (28-04-2015)Get full text
Journal Article -
13
Large-Area Epitaxial Monolayer MoS sub(2)
Published in ACS nano (08-04-2015)“…Two-dimensional semiconductors such as MoS sub(2) are an emerging material family with wide-ranging potential applications in electronics, optoelectronics, and…”
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Journal Article -
14
Avalanche photodiodes based on MoS2/Si heterojunctions
Published 12-11-2014“…Avalanche photodiodes (APDs) are the semiconducting analogue of photomultiplier tubes offering very high internal current gain and fast response. APDs are…”
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15
Highly-Oriented Atomically Thin Ambipolar MoSe$_2$ Grown by Molecular Beam Epitaxy
Published 30-05-2017“…Transition metal dichalcogenides (TMDCs), together with other two-dimensional (2D) materials have attracted great interest due to the unique optical and…”
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Journal Article -
16
Large-area Epitaxial Monolayer MoS2
Published 01-05-2014“…Two-dimensional semiconductors such as MoS2 are an emerging material family with wide-ranging potential applications in electronics, optoelectronics and energy…”
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Journal Article -
17
Light Generation and Harvesting in a Van der Waals Heterostructure
Published 11-03-2014“…Two-dimensional (2D) materials are a new type of materials under intense study because of their interesting physical properties and wide range of potential…”
Get full text
Journal Article