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Sangryun Lee
Sangryun Lee
Division of Mechanical and Biomedical Engineering
Verified email at ewha.ac.kr
Title
Cited by
Cited by
Year
Cost-effective and strongly integrated fabric-based wearable piezoelectric energy harvester
J Kim, S Byun, S Lee, J Ryu, S Cho, C Oh, H Kim, K No, S Ryu, YM Lee, ...
Nano Energy 75, 104992, 2020
472020
Omnidirectionally and highly stretchable conductive electrodes based on noncoplanar zigzag mesh silver nanowire arrays
G Lee, SG Lee, Y Chung, GY Bae, S Lee, S Ryu, K Cho
Advanced Electronic Materials 2 (8), 1600158, 2016
472016
Generative machine learning algorithm for lattice structures with superior mechanical properties
S Lee, Z Zhang, GX Gu
Materials Horizons 9 (3), 952-960, 2022
452022
A micromechanics-based analytical solution for the effective thermal conductivity of composites with orthotropic matrices and interfacial thermal resistance
S Lee, J Lee, B Ryu, S Ryu
Scientific reports 8 (1), 1-11, 2018
442018
Micromechanics-based homogenization of the effective physical properties of composites with an anisotropic matrix and interfacial imperfections
S Ryu, S Lee, J Jung, J Lee, Y Kim
Frontiers in Materials 6, 439850, 2019
322019
Modified Eshelby tensor for an anisotropic matrix with interfacial damage
S Lee, J Lee, S Ryu
Mathematics and Mechanics of Solids 24 (6), 1749-1762, 2019
302019
Theoretical study of the effective modulus of a composite considering the orientation distribution of the fillers and the interfacial damage
S Lee, S Ryu
European Journal of Mechanics-A/Solids 72, 79-87, 2018
292018
Ambient humidity‐induced phase separation for fiber morphology engineering toward piezoelectric self‐powered sensing
S Lee, D Kim, S Lee, YI Kim, S Kum, SW Kim, Y Kim, S Ryu, M Kim
Small 18 (17), 2105811, 2022
272022
Investigation of effective thermoelectric properties of composite with interfacial resistance using micromechanics-based homogenisation
J Jung, S Lee, B Ryu, S Ryu
International Journal of Heat and Mass Transfer 144, 118620, 2019
262019
Applicability of the interface spring model for micromechanical analyses with interfacial imperfections to predict the modified exterior Eshelby tensor and effective modulus
S Lee, Y Kim, J Lee, S Ryu
Mathematics and Mechanics of Solids 24 (9), 2944-2960, 2019
242019
Computational analysis of metallic nanowire-elastomer nanocomposite based strain sensors
S Lee, M Amjadi, N Pugno, I Park, S Ryu
AIP Advances 5 (11), 2015
202015
Nucleation of dislocations in 3.9 nm nanocrystals at high pressure
A Parakh, S Lee, KA Harkins, MT Kiani, D Doan, M Kunz, A Doran, ...
Physical review letters 124 (10), 106104, 2020
182020
Deep learning accelerated design of mechanically efficient architected materials
S Lee, Z Zhang, GX Gu
ACS Applied Materials & Interfaces 15 (18), 22543-22552, 2023
162023
Ubiquitous graphene electronics on scotch tape
Y Chung, H Ho Kim, S Lee, E Lee, S Won Kim, S Ryu, K Cho
Scientific reports 5 (1), 12575, 2015
142015
Extreme-Pressure Imprint Lithography for Heat and Ultraviolet-Free Direct Patterning of Rigid Nanoscale Features
WI Park, TW Park, YJ Choi, S Lee, S Ryu, X Liang, YS Jung
ACS nano 15 (6), 10464-10471, 2021
132021
Micromechanics-based prediction of the effective properties of piezoelectric composite having interfacial imperfections
S Lee, J Jung, S Ryu
Composite Structures 240, 112076, 2020
122020
Stress-induced structural transformations in Au nanocrystals
A Parakh, S Lee, MT Kiani, D Doan, M Kunz, A Doran, S Ryu, XW Gu
Nano letters 20 (10), 7767-7773, 2020
112020
Machine learning-enabled development of high performance gradient-index phononic crystals for energy focusing and harvesting
S Lee, W Choi, JW Park, DS Kim, S Nahm, W Jeon, GX Gu, M Kim, S Ryu
Nano Energy 103, 107846, 2022
102022
Multiscale modeling framework to predict the effective stiffness of a crystalline-matrix nanocomposite
S Lee, J Jung, Y Kim, Y Kim, S Ryu
International Journal of Engineering Science 161, 103457, 2021
92021
Molecular dynamics study on the distributed plasticity of penta-twinned silver nanowires
S Lee, S Ryu
Frontiers in Materials 2, 56, 2015
92015
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Articles 1–20