Publication
paper 2025
Structure Identification of CO Monolayer on Ag(111) Using Atomic Force Microscopy | |
---|---|
Adv. Mater. Interfaces 12 (2025) 2400904 |
M. Kimura, Y. Kunisada, and Y. Sugimoto |
Atomic Observation on Diamond (001) Surfaces with Near-Contact Atomic Force Microscopy | |
Nano letters 25 (2025) 1101 |
R. Zhang, Y. Yasui, M. Fukuda, T. Ozaki, M. Ogura, T. Makino, D. Takeuchi, and Y. Sugimoto |
paper 2024
Closing of the Mott gap near step edges in NiS2 | |
---|---|
Physical Review B 110 (2024) 045109 |
Y. Yasui, K. Iwata, S. Okazaki, S. Miyasaka, Y. Sugimoto, T. Hanaguri, H. Takagi, and T. Sasagawa |
Element-selective structural visualization for the oxygen-induced surface of Nb(110) | |
Physical Review B 109 (2024) 195417 |
Y. Yasui, K. Matsunaga, K. Sagisaka, and Y. Sugimoto |
paper 2023
Atomic arrangement of Si adatom on the Silicene/Ag(111) surface | |
---|---|
Applied Surface Science 630 (2023) 157336 |
Y. Adachi, Z. Runnan, X. Wang, M. Fukuda, T. Ozaki, and Y. Sugimoto |
Identification of OH groups on SrTiO3(100)-(R13xR13)-R33.7 reconstructed surface by non-contact atomic force microscopy and scanning tunneling microscopy | |
Applied Physics Letters 122 (2023) 071602 |
D. Katsube, R. Shimizu, Y. Sugimoto, T. Hitosugi, and M. Abe |
paper 2022
On-surface synthesis of hydroxy-functionalized graphene nanoribbons through deprotection of methylenedioxy groups | |
---|---|
Nanoscale Advances 4 (2022) 4871 |
M. Ohtomo, H. Hayashi, A. Shiotari, M. Kawamura, R. Hayashi, H. Jippo, J. Yamaguchi, M. Ohfuchi, N. Aratani, Y. Sugimoto, H. Yamada and S. Sato |
Lattice distortion of oxygen monolayer on Ag(111) observed by scanning probe microscopy | |
Physical Review B 106 (2022) 115432 |
M. Kimura, and Y. Sugimoto |
paper 2021
Mechanically Induced Single-molecule Helicity Switching of Graphene-Nanoribbon-fused Helicene on Au(111) | |
---|---|
Chemical Science 12 (2021) 13301 |
A. Ishii, A. Shiotari, and Y. Sugimoto |
In Situ Reproducible Sharp Tips for Atomic Force Microscopy | |
Physical Review Applied 15 (2021) 034079 |
J. Onoda, T. Hasegawa, and Y. Sugimoto |
Role of intermolecular interactions in the catalytic reaction of formic acid on Cu(111) | |
Small 17 (2021) 2008010 |
A. Shiotari, S. Eka, M. Putra, Y. Shiozawa, Y. Hamamoto, K. Inagaki, Y. Morikawa, Y. Sugimoto, J. Yoshinobu, and I. Hamada |
Structure of one-dimensional monolayer Si nanoribbons on Ag(111) | |
Physical Review Materials 5 (2021) 034002 |
L. Feng, A. Shiotari, K. Yabuoshi, M. Fukuda, T. Ozaki, and Y. Sugimoto |
Role of tip apices in scanning force spectroscopy on alkali halides at room temperature—chemical nature of the tip apex and atomic-scale deformations | |
Nanotechnology 32 (2021) 035706 |
P. Wagner, A. Foster, I. Yi, M. Abe, Y. Sugimoto, and R. Hoffmann-Voge |
paper 2020
Manipulable Metal Catalyst for Nanographene Synthesis | |
---|---|
Nano Letters 20 (2020) 8339 |
A. Shiotari, I. Hamada, T. Nakae, S. Mori, T. Okujima, H. Uno, H. Sakaguchi, Y. Hamamoto, Y. Morikawa, Y. Sugimoto |
Intrinsic reconstruction of ice-I surfaces | |
Science Advances 6 (2020) eabb7986 |
N. Kawakami, K. Iwata, A. Shiotari, and Y. Sugimoto |
Automated extraction of the short-range part of the interaction in non-contact atomic force microscopy | |
Applied Physics Letters 117 (2020) 033104 |
Z. Diao, D. Katsube, H. Yamashita, Y. Sugimoto, O. Custance, and M. Abe |
Small bandgap in atomically precise 17-atom-wide armchairedged graphene nanoribbons | |
Communications Materials 1 (2020) 36 |
J. Yamaguchi, H. Hayashi, H. Jippo, A. Shiotari, M. Ohtomo, M. Sakakura, N. Hieda, N. Aratani, M. Ohfuchi, Y. Sugimoto, H. Yamada, and S. Sato |
Quality control of on-surface-synthesised seven-atom wide armchair graphene nanoribbons | |
Nanoscale 12 (2020) 6651 |
A. Ishii, A. Shiotari, and Y. Sugimoto |
Chemical identification of the foremost tip atom in atomic force microscopy | |
Nano Letters 20 (2020) 2000 |
J. Onoda, H. Miyazaki, and Y. Sugimoto |
Detection of Spin Transfer from Metal to Molecule by Magnetoresistance Measurement | |
Nano Letters 20 (2020) 75 |
H. Gamou, K. Shimose, R. Enoki, E. Minamitani, A. Shiotari, Y. Kotani, K. Toyoki, T. Nakamura, Y. Sugimoto, M. Kohda, J. Nitta, and S. Miwa |
paper 2019
Less-ordered structures of silicene on Ag(111) surface revealed by atomic force microscopy | |
---|---|
Physical Review Materials 3 (2019) 104002 (Selected for Editors' suggestion) |
J. Onoda, L. Feng, K. Yabuoshi, and Y. Sugimoto |
Force spectroscopy using a quartz length-extension resonator | |
Applied Physics Letters 115 (2019) 173104 |
Y. Sugimoto and J. Onoda |
Characterization of two- and one-dimensional water networks on Ni(111) via atomic force microscopy | |
Physical Review Materials 3 (2019) 093001(R) (Featured in Physics) |
A. Shiotari, Y. Sugimoto, and H. Kamio |
Realization of spin dependent functionality by covering a metal surface with a single layer of molecules | |
Nano Letters 19 (2019) 7119 |
H. Isshiki, K. Kondou,S. Takizawa, K. Shimose, T. Kawabe, E. Minamitani, N. Yamaguchi, F. Ishii, A. Shiotari, Y. Sugimoto, S. Miwa, and Y. Otani |
Evidence for honeycomb-chained trimer structure of multilayer silicene on Ag(111) with noncontact atomic force microscopy | |
Japanese Journal of Applied Physics 58 (2019) 020903 |
K. Yabuoshi, and Y. Sugimoto |
paper 2018
Structural identification of silicene on Ag(111) surface by atomic force microscopy | |
---|---|
Physical Review B 98 (2018) 195311 |
L. Feng, K. Yabuoshi, Y. Sugimoto, J. Onoda, M. Fukuda, and T. Ozaki |
Torque-induced change in configuration of a single NO molecule on Cu(110) | |
Physical Review Letters 121 (2018) 116101 |
A. Shiotari, T. Odani, and Y. Sugimoto |
Synthesis, Structures, and Properties of Core-Expanded Azacoronene Analog: A Twisted π-System with Two N-Doped Heptagons | |
Journal of The American Chemical Society
140 (2018) 10430–10434 |
K. Oki, M. Takase, S. Mori, A. Shiotari, Y. Sugimoto, K. Ohara, T. Okujima, and H. Uno |
Water-NO Complex Formation and Chain Growth on Cu(111) | |
The Journal of Physical Chemistry C 122 (2018) 8894 |
H. Koshida, S. Hatta, H. Okuyama, A. Shiotari, Y. Sugimoto, and T. Aruga |
Chiral Discrimination and Manipulation of Individual Heptahelicene Molecules on Cu(001) by Noncontact Atomic Force Microscopy | |
The Journal of Physical Chemistry C 122 (2018) 4997 |
A. Shiotari, K. Tanaka, T. Nakae, S. Mori, T. Okujima, H. Uno, H. Sakaguchi, and Y. Sugimoto |
paper 2017
High-resolution imaging of the silicene on Ag(111) surface by atomic force microscopy | |
---|---|
Physical Review B 96 (2017) 241302(R) |
J. Onoda, K. Yabuoshi, H. Miyazaki, and Y. Sugimoto |
Atom manipulation method to substitute individual adsorbate atoms into a Si(111)-(7x7) substrate at room temperature | |
Applied Physics Letters 111 (2017) 233102 |
A. Yurtsever, M. Abe, S. Morita, and Y. Sugimoto |
First-principles study of lateral atom manipulation assisted by structural relaxation of a scanning tip apex | |
Physical Review B 96 (2017) 155417 |
B. Enkhtaivan, Y. Sugimoto, A. Oshiyama |
Investigation of atomic species in Pt-induced nanowires on Ge(001) surface by combined atomic force and scanning tunneling microscopy | |
Physical Review B 96 (2017) 155415 |
E. Inami, Y. Sugimoto, T. Shinozaki, O. Gurlu, and A. Yurtsever |
Role of lateral forces on atom manipulation process on Si(111)-(7x7) surface in dynamic force microscopy | |
Physical Review B 96 (2017) 155412 |
A. Yurtsever, M. Abe, S. Morita, and Y. Sugimoto |
Strain-induced skeletal rearrangement of a polycyclic aromatic hydrocarbon on a copper surface | |
Nature Communications 8 (2017) 16089 |
A. Shiotari, T. Nakae, K. Iwata, S. Mori, T. Okujima, H. Uno, H. Sakaguchi, and Y. Sugimoto |
Electronegativity determination of individual surface atoms by atomic force microscopy | |
Nature Communications 8 (2017) 15155 |
J. Onoda, M. Ondracek, P. Jelinek, and Y. Sugimoto |
The Local electronic properties of individual Pt atoms adsorbed on TiO2(110) studied by Kelvin probe force microscopy and first-principles simulations | |
Nanoscale 9 (2017) 5812 |
A. Yurtsever, D. Fernandez-Torre, J. Onoda, M. Abe, S. Morita, Y. Sugimoto, and R. Perez |
Ultrahigh-resolution imaging of water networks by atomic force microscopy | |
Nature Communications 8 (2017) 14313 |
A. Shiotari, and Y. Sugimoto |
Mechanical properties on In/Si(111)-(8x2) investigated by atomic force microscopy | |
Japanese Journal of Applied Physics 56 (2017) 015701 |
K. Iwata, S. Yamazaki, A. Shiotari, and Y. Sugimoto |
Straight Imaging and Mechanism behind Grain Boundary Electron Emission in Pt-doped Ultrananocrystalline Diamond Films | |
Carbon 111 (2017) 8 |
K. Panda, E. Inami, Y. Sugimoto, K.J. Sankaran, and I.-N. Lin |
paper 2016
Effects of Pb intercalation on the structural and electronic properties of epitaxial graphene on SiC | |
---|---|
Small 12 (2016) 3956 |
A. Yurtsever, Jo Onoda, T. Iimori, K. Niki, T. Miyamachi, M. Abe, S. Mizuno, S. Tanaka, F. Komori, and Y. Sugimoto |
Combined atomic force microscopy and voltage pulse technique to accurately measure electrostatic force | |
Japanese Journal of Applied Physics 55 (2016) 08NB05 |
E. Inami and Y. Sugimoto |
Atomic Force Microscopy for Imaging, Identification and Manipulation of Single Atoms | |
e-Journal of Surface Science and Nanotechnology 14 (2016) 28 |
Y. Sugimoto |
Imaging the TiO2(011)-(2x1) Surface using Noncontact Atomic Force Microscopy and Scanning Tunneling Microscopy | |
The Journal of Physical Chemistry C 120 (2016) 3390 |
A. Yurtsever, J. Onoda, M. Abe, C.L. Pang, Y. Sugimoto |
paper 2015
Identification of Si and Ge atoms by atomic force microscopy | |
---|---|
Physical Review B 92 (2015) 155309 |
J. Onoda, K. Niki, and Y. Sugimoto |
Chemical structure imaging of a single molecule by atomic force microscopy at room temperature | |
Nature Communications 6 (2015) 7766 |
K. Iwata, S. Yamazaki, P. Mutombo, P. Hapala, M. Ondracek, P. Jelinek, and Y. Sugimoto |
Accurate extraction of electrostatic force by a voltage pulse force spectroscopy | |
Physical Review Letters 114 (2015) 246102 (Featured in Physics) |
E. Inami, and Y. Sugimoto |
Interplay between switching driven by the tunneling current and atomic force of a bistable four-atom Si quantum dot | |
Nano Letters 15 (2015) 4356 |
S. Yamazaki, K. Maeda, Y. Sugimoto, M. Abe, V. Zobac, P. Pou, L. Rodrigo, P. Mutombo, R. Perez, P. Jelinek, and S. Morita |
Room-temperature-concerted switch made of a binary atom cluster | |
Nature Communications 6 (2015) 6231 |
E. Inami, I. Hamada, K. Ueda, M. Abe, S. Morita, and Y. Sugimoto |
Pt atoms adsorbed on TiO2(110)(1x1) studied with noncontact atomic force microscopy and firstprinciples simulations | |
Physical Review B 91 (2015) 075401 |
D. Fernandez-Torre, A. Yurtsever, J. Onoda, M. Abe, S. Morita, Y. Sugimoto, and R. Perez |
paper 2014
Identifying the absolute orientation of a low-symmetry surface in real space | |
---|---|
Physical Review B 90 (2014) 195405 |
S. Kuhn, M. Kittelmann, Y. Sugimoto, M. Abe, A. Kuhnle, and P. Rahe |
Direct observation and mechanism for enhanced field emission sites in platinum ion implanted/post-annealed ultrananocrystalline diamond films | |
Applied Physics Letters 105 (2014) 163109 |
K. Panda, K.J. Sankaran, E. Inami, Y. Sugimoto, N.H. Tai, and I.-N. Lin |
Atomic-dipole-moment induced local surface potential on Si(111)-(7×7) surface studied by non-contact scanning nonlinear dielectric microscopy | |
Applied Physics Letters 105 (2014) 121601 |
K. Yamasue, M. Abe, Y. Sugimoto, and Y. Cho |
(2nx1) Reconstructions of TiO2(011) Revealed by Noncontact Atomic Force Microscopy and Scanning Tunneling Microscopy | |
The Journal of Physical Chemistry C 118 (2014) 23168 |
C.L. Pang, A. Yurtsever, J. Onoda, Y. Sugimoto, and G. Thornton |
Improved study of electric dipoles on the Si(100)-2x1 surface by non-contact scanning nonlinear dielectric microscopy | |
Applied Physics Letters 105 (2014) 101603 |
M. Suzuki, K. Yamasue, M. Abe, Y. Sugimoto, and Y. Cho |
Mechanical gate control for atom-by-atom cluster assembly with scanning probe microscopy | |
Nature Communications 5 (2014) 4360 |
Y. Sugimoto, A. Yurtsever, N. Hirayama, M. Abe, and S. Morita |
Subsurface Charge Repulsion of Adsorbed H-Adatoms on TiO2(110) | |
The Journal of Physical Chemistry C 118 (2014) 13674 |
J. Onoda, C.L. Pang, A. Yurtsever, and Y. Sugimoto |
Initial and secondary oxidation products on the Si(111)-(7 × 7) surface identified by atomic force microscopy and first principles calculations | |
Applied Physics Letters 104 (2014) 133107 |
J. Onoda, M. Ondracek, A. Yurtsever, P. Jelinek, and Y. Sugimoto |
paper 2013
Quantum degeneracy in atomic point contacts revealed by chemical force and conductance | |
---|---|
Physical Review Letters 111 (2013) 106803 (Selected for Editors' suggestion) |
Y. Sugimoto, M. Ondracek, M. Abe, P. Pou, S. Morita, R. Perez, F. Flores, and P. Jelinek |
Role of Tip Chemical Reactivity on Atom Manipulation Process in Dynamic Force Microscopy | |
ACS Nano 8 (2013) 7370 |
Y. Sugimoto, A. Yurtsever, M. Abe, S. Morita, M. Ondracek, P. Pou, R. Perez, and P. Jelinek |
Mechanical Properties of Various Phases on In/Si(111) Surfaces Revealed by Atomic Force Microscopy | |
Applied Physics Express 6 (2013) 155403 |
K. Iwata, S. Yamazaki, Y. Tani, and Y. Sugimoto |
Force mapping on a partially H-covered Si(111)-(7×7) surface: Influence of tip and surface reactivity | |
Physical Review B 87 (2013) 155403 |
A. Yurtsever, Y. Sugimoto, H. Tanaka, M. Abe, S. Morita, M. Ondracek, P. Pou, R. Perez, and P. Jelinek |
Simultaneous noncontact AFM and STM of Ag:Si(111)-(R3xR3)R30 | |
Physical Review B 87 (2013) 075310 |
A. Sweetman, A. Stannard, Y. Sugimoto, M. Abe, S. Morita, and P. Moriarty |
paper 2012
Effect of tip polarity on Kelvin probe force microscopy images of thin insulator CaF2 films on Si(111) | |
---|---|
Applied Physics Letters 101 (2012) 083119 |
A. Yurtsever, Y. Sugimoto, M. Fukumoto, M. Abe, and S. Morita |
Understanding image contrast formation in TiO2 with force spectroscopy | |
Physical Review B 85 (2012) 125416 |
A. Yurtsever, D. Fernandez-Torre, C. Gonzalez, P. Jelinek, P. Pou, Y. Sugimoto, M. Abe, R. Perez, and S. Morita |
Three dimensional scanning force/tunneling spectroscopy at room temperature | |
Journal of Physics: Condensed Matter 24 (2012) 084008 |
Y. Sugimoto, K. Ueda, M. Abe, and S. Morita |
paper 2011
Simultaneous Scanning Force/Tunneling Microscopy Using a Quartz Cantilever with a Tungsten Tip | |
---|---|
Applied Physics Express 4 (2011) 115201 |
K. Morita, Y. Sugimoto, M. Abe, and S. Morita |
Kelvin probe force microscopy characterization of TiO2(110)-supported Au clusters | |
Applied Physics Letters 99 (2011) 123102 |
H.J. Chung, A. Yurtsever, Y. Sugimoto, M. Abe, and S. Morita |
Alkali-metal adsorption and manipulation on hydroxylated TiO2(110) surface using atomic force microscopy | |
Physical Review B 84 (2011) 085413 |
A. Yurtsever, Y. Sugimoto, M. Abe, K. Matsunaga, I. Tanaka, and S. Morita |
Fabrication of quartz cantilevers for small-amplitude dynamic force microscopy using an optical deflection sensor | |
Japanese Journal of Applied Physics 50 (2011) 08LB12 |
K. Morita, Y. Sasagawa, Y. Murai, Y. Sugimoto, M. Abe, and S. Morita |
Flexible drift-compensation system for precise 3D force mapping in severe drift environments | |
Review of Scientific Instruments 82 (2011) 063704 | P. Rahe, J. Schutte, W. Schniederberend, M. Reichling, M. Abe, Y. Sugimoto, and A. Kuhnle |
Lateral Manipulation of Single Defect on Insulating Surface Using Noncontact Atomic Force Microscope | |
Japanese Journal of Applied Physics 50 (2011) 015201 | I. Yi, R. Nishi, M. Abe, Y. Sugimoto, and S. Morita |
paper 2010
Observation of subsurface atoms of the Si(111)-(7x7) surface by atomic force microscopy | |
---|---|
Applied Physics Express 3 (2010) 116602 |
D. Sawada, Y. Sugimoto, M. Abe, and S. Morita |
Accurate formula for conversion of tunneling current in dynamic atomic force spectroscopy | |
Applied Physics Letters 97 (2010) 043502 |
J.E. Sader and Y. Sugimoto |
Small-amplitude dynamic force microscopy using a quartz cantilever with an optical interferometer | |
Nanotechnology 21 (2010) 305704 |
K. Morita, Y. Sugimoto, Y. Sasagawa, M. Abe, and S. Morita |
Simultaneous force and current mapping of the Si(111)-(7x7) surface by dynamic force microscopy | |
Applied Physics Letters 96 (2010) 263114 |
Y. Sugimoto, I. Yi, K. Morita, M. Abe, and S. Morita |
Simultaneous AFM and STM measurements on the Si(111)-(7x7) surface | |
Physical Review B 81 (2010) 245322 |
Y. Sugimoto, Y. Nakajima, D. Sawada, K. Morita, M. Abe, and S. Morita |
NC-AFM imaging of the TiO2(110)-(1x1) surface at low temperature | |
Nanotechnology 21 (2010) 165702 |
A. Yurtsever, Y. Sugimoto, M. Abe, and S. Morita |
Simultaneous atomic-force and scanning-tunneling microscopy study of the Ge(111)-c(2x8) surface | |
Journal of Vacuum Science & Technology B 28 (2010) C4D1 |
D. Sawada, Y. Sugimoto, K. Morita, M. Abe, and S. Morita |
paper 2009
New insights on atomic-resolution frequency-modulation Kelvin probe force microscopy imaging on semiconductors | |
---|---|
Physical Review Letters 103 (2009) 266103 |
S. Saderwasser, P. Jelinek, C.K. Fang, O. Custance, Y. Yamada, Y. Sugimoto, M. Abe, and S. Morita |
Simultaneous measurement of force and tunneling current at room temperature | |
Applied Physics Letters 94 (2009) 173117 |
D. Sawada, Y. Sugimoto, K. Morita, M. Abe, and S. Morita |
Simultaneous atomic imaging of atomic force microscopy and scanning tunneling microscopy using metal coated cantilevers | |
Materials Transactions 50 (2009) 940 |
D. Sawada, A. Hrai, Y. Sugimoto, M. Abe, and S. Morita |
Mapping and imaging for rapid atom discrimination: A study of frequency modulation atomic force microscopy | |
Applied Physics Letters 94 (2009) 023108 |
Y. Sugimoto, T. Namikawa, M. Abe, and S. Morita |
paper 2008
Statictics of lateral atom manipulation by atomic force microscopy at room temperature | |
---|---|
Physical Review B 78 (2008) 205305 |
Y. Sugimoto, K. Miki, M. Abe, and S. Morita |
High spatial resolution topographic imaging and dimmer distance analysis of Si(100)-(2x1) using non-contact atomic force microscopy | |
Japanese Journal of Applied Physics 47 (2008) 6085 |
D. Sawada, T. Namikawa, M. Hiragaki, Y. Sugimoto, M. Abe, and S. Morita |
Complex patterning by vertical interchange atom manipulation using atomic force microscopy | |
Science 322 (2008) 413 |
Y. Sugimoto, P. Pou, O. Custance, P. Jelinek, M. Abe, R. Perez, and S. Morita |
Vertical and lateral force mapping on the Si(111)-(7x7) surface by dynamic force microscopy | |
Physical Review B 77 (2008) 195424 |
Y. Sugimoto, T. Namikawa, K. Miki, M. Abe, and S. Morita |
Atom-by-atom chemical coorination effect observed in non-contact AFM topography of Pb/Si(111)-(R3xR3) mosaic phase | |
e-Journal of Surface Science and Nanotechnology 6 (2008) 79 |
A. Ohiso, Y. Sugimoto, K. Mizuta, M. Abe, and S. Morita |
paper 2007
Dynamic force spectroscopy using cantilever higher flexural modes | |
---|---|
Applied Physics Letters 91 (2007) 093120 |
Y. Sugimoto, S. Innami, M. Abe, O. Custance, and S. Morita |
Tip-induced local reconstruction on the Pb/Ge(111) surface using frequency modulation atomic force microscopy | |
Japanese Journal of Applied Physics 46 (2007) 5582 |
A. Ohiso, Y. Sugimoto, M. Abe, and S. Morita |
Drift-compensated data acquisition performed at room temperature with frequency modulation atomic force microscopy | |
Applied Physics Letters 90 (2007) 203103 |
M. Abe, Y. Sugimoto, T. Namikawa, K. Morita, N. Oyabu, and S. Morita |
Mechanism for room-temperature single-atom lateral manipulations on semiconductors using dynamic force microscopy | |
Physical Review Letters 98 (2007) 106104 |
Y. Sugimoto, P. Jelinek, P. Pou, M. Abe, S. Morita, R. Perez, and O. Custance |
Toward Atom-by-Atom Assembly of Compound Semiconductor Nanostructures: Mechanical Atomic discrimination and Atomic Manipulation at Room Temperature | |
Current Nanoscience 3 (2007) 31 |
S. Morita, Y. Sugimoto, and M. Abe |
Chemical identification of individual surface atoms by atomic force microscopy | |
Nature 446 (2007) 64 |
Y. Sugimoto, P. Pou, M. Abe, P. Jelinek, R. Perez, S. Morita, and O. Custance |
Non-contact atomic force microscopy investigation of the (1x1) and (R3xR3) phases on the Pb/Si(111) surface | |
e-Journal of Surface Science and Nanotechnology 5 (2007) 67 |
A. Ohiso, Y. Sugimoto, K. Mizuta, M. Abe, and S. Morita |
Atomic structure of Ge clusters on Si(111)-(7x7) by non-contact AFM | |
Nanotechnology 18 (2007) 084013 |
I. Yi, Y. Sugimoto, R. Nishi, M. Abe, and S. Morita |
Direct observation of vacancy site of the iron silicide c(4x8) phase using frequency modulation atomic force microscopy | |
Nanotechnology 18 (2007) 084012 |
Y. Sugimoto, M. Abe, S. Konoshita, and S. Morita |
Non-contact AFM observation of the (R3xR3) to (3x3) phase transition on Sn/Ge(111) and Sn/Si(111) surfaces | |
Applied Surface Science 253 (2007) 3072 |
I. Yi, R. Nishi, Y. Sugimoto, and S. Morita |
paper 2006
Highly resolved non-contact atomic force microscopy images of the Sn/Si(111)-(2R3x2R3) surface | |
---|---|
Nanotechnology 17 (2006) 4235 |
Y. Sugimoto, M. Abe, S. Hirayama, and S. Morita |
Study on topographic images of Sn/Si(111)-(R3xR3) R30 surface by non-contact AFM | |
Surface Science 600 (2006) 3382 |
I. Yi, Y. Sugimoto, R. Nishi, and S. Morita |
Discrimination of individual atoms on Ge/Si(111)-(7x7) intermixed surface | |
Surface Science 600 (2006) 2766 |
I. Yi, R. Nishi, Y. Sugimoto, M. Abe, Y. Sugawara, and S. Morita |
Real topography, atomic relaxations, and short-range chemical interaction in atomic force microscopy: the case of the a-Sn/Si(111)-(R3xR3) R30 surface | |
Physical Review B 73 (2006) 205329 |
Y. Sugimoto, P. Pou, O. Custance, P. Jelinek, S. Morita, R. Perez, and M. Abe |
Site-specific Force Spectroscopy and Atom Interchange Manipulation at Room Temperature | |
e-Journal of Surface Science and Nanotechnology 4 (2006) 376 |
Y. Sugimoto, O. Custance, M. Abe, and S. Morita |
Single atomic contact adhesion and dissipation in dynamic force microscopy | |
Physical Review Letters 96 (2006) 106101 |
N. Oyabu, P. Pou, Y. Sugimoto, P. Jelinek, M. Abe, S. Morita, R. Perez, and O. Custance |
paper 2005
Atom tracking for reproducible force spectroscopy at room temperature with non-contact atomic force microscopy | |
---|---|
Nanotechnology 16 (2005) 3029 |
M. Abe, Y. Sugimoto, O. Custance, and S. Morita |
Room-temperature reproducible spatial force spectroscopy using atom-tracking technique | |
Applied Physics Letters 87 (2005) 173503 |
M. Abe, Y. Sugimoto, O. Custance, and S. Morita |
Lateral manipulation of single atoms at semiconductor surfaces using atomic force microscopy | |
Nanotechnology 16 (2005) S112 |
N. Oyabu, Y. Sugimoto, M. Abe, O. Custance, and S. Morita |
Atom inlays performed at room temperature using atomic force microscopy | |
Nature materials 4 (2005) 156 |
Y. Sugimoto, M. Abe, S. Hirayama, N. Oyabu, O. Custance, and S. Morita |
Imaging the restatom of the Ge(111)-c(2x8) surface with noncontact atomic force microscopy at room temperature | |
Nanotechnology 16 (2005) S68 |
M. Abe, Y. Sugimoto, and S. Morita |
Mechanical Distinction and Manipulation of Atoms Based on Noncontact Atomic Force Microscopy | |
Applied Surface Science 241 (2005) 2 |
S. Morita, I. Yi, Y. Sugimoto, N. Oyabu, R. Nishi, O. Custance and M. Abe |
Non-contact atomic force microscopy study of the Sn/Si(111) mosaic phase | |
Applied Surface Science 241 (2005) 23 |
Y. Sugimoto, M .Abe, K. Yoshimoto, O. Custance, I. Yi and S. Morita |