Hong-Joon Yoon
Sungkyunkwan University
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Publication
Featured researches published by Hong-Joon Yoon.
Advanced Materials | 2015
Ju-Hyuck Lee; Ronan Hinchet; Tae Yun Kim; Hanjun Ryu; Wanchul Seung; Hong-Joon Yoon; Sang-Woo Kim
Negatively polarized ferroelectric polymer β-P(VDF-TrFE) shows higher positive triboelectric properties than skin, which could lead to new medical applications. Kelvin force microscope measurements and triboelectric nanogenerator characterizations are performed to demonstrate this new property. In addition, how many negative charges are exchanged by contact electrification between the negatively polarized β-P(VDF-TrFE) and the skin is estimated.
Advanced Materials | 2017
Ju-Hyuck Lee; Jae-Young Park; Eun Bi Cho; Tae Yun Kim; Sang A Han; Tae-Ho Kim; Yanan Liu; Sung Kyun Kim; Chang Jae Roh; Hong-Joon Yoon; Hanjun Ryu; Wanchul Seung; Jong Seok Lee; Jaichan Lee; Sang-Woo Kim
Recently, piezoelectricity has been observed in 2D atomically thin materials, such as hexagonal-boron nitride, graphene, and transition metal dichalcogenides (TMDs). Specifically, exfoliated monolayer MoS2 exhibits a high piezoelectricity that is comparable to that of traditional piezoelectric materials. However, monolayer TMD materials are not regarded as suitable for actual piezoelectric devices due to their insufficient mechanical durability for sustained operation while Bernal-stacked bilayer TMD materials lose noncentrosymmetry and consequently piezoelectricity. Here, it is shown that WSe2 bilayers fabricated via turbostratic stacking have reliable piezoelectric properties that cannot be obtained from a mechanically exfoliated WSe2 bilayer with Bernal stacking. Turbostratic stacking refers to the transfer of each chemical vapor deposition (CVD)-grown WSe2 monolayer to allow for an increase in degrees of freedom in the bilayer symmetry, leading to noncentrosymmetry in the bilayers. In contrast, CVD-grown WSe2 bilayers exhibit very weak piezoelectricity because of the energetics and crystallographic orientation. The flexible piezoelectric WSe2 bilayers exhibit a prominent mechanical durability of up to 0.95% of strain as well as reliable energy harvesting performance, which is adequate to drive a small liquid crystal display without external energy sources, in contrast to monolayer WSe2 for which the device performance becomes degraded above a strain of 0.63%.
Advanced Functional Materials | 2015
Ju-Hyuck Lee; Hong-Joon Yoon; Tae Yun Kim; Manoj Kumar Gupta; Jeong Hwan Lee; Wanchul Seung; Hanjun Ryu; Sang-Woo Kim
Advanced Energy Materials | 2016
Keun Young Lee; Hong-Joon Yoon; Tao Jiang; Xiaonan Wen; Wanchul Seung; Sang-Woo Kim; Zhong Lin Wang
Advanced Energy Materials | 2017
Wanchul Seung; Hong-Joon Yoon; Tae Yun Kim; Hanjun Ryu; Jihye Kim; Ju-Hyuck Lee; Jeong Hwan Lee; Sanghyun Kim; Yun Kwon Park; Young Jun Park; Sang-Woo Kim
Nano Energy | 2015
Usman Khan; Tae-Ho Kim; Kang Hyuck Lee; Ju-Hyuck Lee; Hong-Joon Yoon; Ravi Bhatia; I. Sameera; Wanchul Seung; Hanjun Ryu; Christian Falconi; Sang-Woo Kim
Advanced Energy Materials | 2015
Ju-Hyuck Lee; Hanjun Ryu; Tae-Yun Kim; Sung‐Soo Kwak; Hong-Joon Yoon; Tae-Ho Kim; Wanchul Seung; Sang-Woo Kim
Advanced Energy Materials | 2017
Hanjun Ryu; Ju-Hyuck Lee; Tae-Yun Kim; Usman Khan; Jeong Hwan Lee; Sung Soo Kwak; Hong-Joon Yoon; Sang-Woo Kim
Archive | 2015
Sang-Woo Kim; Ju-Hyuck Lee; Wanchul Seung; Han-Joon Ryu; Hong-Joon Yoon; Keun-Young Lee
Advanced Functional Materials | 2015
Ju-Hyuck Lee; Hong-Joon Yoon; Tae Yun Kim; Manoj Kumar Gupta; Jeong Hwan Lee; Wanchul Seung; Hanjun Ryu; Sang-Woo Kim