Publication

Printed Intelligent Materials & Devices (PIMD) LAB

Co-first authors, *Corresponding or Co-corresponding authors

[1] Chemical durability engineering of solution-processed oxide thin films and its application for chemically-robust patterned oxide thin-film transistors

Sung Woon Cho, Da Eun Kim, Won Jun Kang, Bora Kim, Dea Ho Yoon, Kyung Su Kim, Hyung Koun Cho*, Yong-Hoon Kim and Yunseok Kim

Journal of Materials Chemistry C, 2017, 5(2), 339-349. (IF : 5.976, Materials science, multidisciplinary field: top 12.2 %)

https://doi.org/10.1039/C6TC04094B

[2] Towards environmentally stable solution-processed oxide thin-film transistors: rare-metal-free oxide-based semiconductor/ insulator heterostructure and chemically stable multi-stacking

Sung Woon Cho, Da Eun Kim, Kyung Su Kim, Sung Hyun Jung, Hyung Koun Cho*

Journal of Materials Chemistry C, 2017, 5(40), 10498-10508. (IF : 5.976, Materials science, multidisciplinary field: top 12.2 %)

https://doi.org/10.1039/C7TC03393A

[3] The pH-dependent corrosion behavior of ternary oxide semiconductors and common metals and its application for solution-processed oxide thin film transistors circuit integration

Sung Woon Cho, Young Been Kim, Da Eun Kim, Kyung Su Kim, Young Dae Yoon, Won Jun Kang, Woobin Lee, Hyung Koun Cho* and Young Hun Kim

Journal of Alloys and Compounds, 2017, 714, 572-582. (IF : 3.779, Metallurgy & metallurgical engineering field: top 6.8 %)

[4] Electrical and chemical stability engineering of solution-processed indium zinc oxide thin film transistors via a synergistic approach of annealing duration and self-combustion process

Da Eun Kim, Sung Woon Cho, Young Been Kim, Kyung Su Kim, Dea Ho Yoon, Sung Hyun Jung, Won Jun Kang, and Hyung Koun Cho

Ceramics International, 2017, 43(12), 8956-8962. (IF : 3.057, Materials science, Ceramics field: top 7.7 %)

[5] Corrosion behavior and metallization of Cu-based electrodes using MoNi alloy and multi-layer structure for back-channel-etched oxide thin-film transistor circuit integration

Da Eun Kim, Sung Woon Cho, Sung Chan Kim, Won Jun Kang and Hyung Koun Cho*

IEEE Transactions on Electron Devices, 2017, 64(2), 447-454. (IF : 2.620).

[6] A combinatorial approach to solution-processed InGaO3(ZnO)m superlattice films Growth mechanisms and their thermoelectric properties

Sung Woon Cho, Myoungho Jeong, Jun Hyeon Kim, Yong Hun Kwon, Hyoungsub Kim, Jeong Yong Lee and Hyung Koun Cho*

CrystEngComm, 2016, 18(5), 807-815. (IF : 3.304, Crystallography field: top 19 %)

[7] Chemically robust solution-processed indium zinc oxide thin film transistors fabricated by back channel wet-etched Mo electrodes

Da Eun Kim, Sung Woon Cho, Bora Kim, Jae Hui Shin, Won Jun Kang, Myeong Gu Yun, Seung Ki Beak, Hyung Koun Cho*, Yong-Hoon Kim and Yunseok Kim

RSC Advances, 2016, 6(58), 53310-53318. (IF : 2.936)

[8] Microstructure-dependent thermoelectric properties of polycrystalline InGaO3(ZnO)2 superlattice films

Sung Woon Cho, Seung Ki Baek, Da Eun Kim, Yunseok Kim and Hyung Koun Cho*

Journal of Vacuum Science and Technology A, 2016, 35(1), 01B126. (IF : 1.374)

[9] Bi-layer channel structure-based oxide thin-film transistors consisting of ZnO and Al-doped ZnO with different Al compositions and stacking sequences

Sung Woon Cho, Myeong Gu Yun, Cheol Hyoun Ahn, So Hee Kim and Hyung Koun Cho*

Electronic Materials Letters, 2015, 11(2), 198-205. (IF : 2.882)

[10] Effects of growth temperature on performance and stability of zinc oxide thin film transistors fabricated by thermal atomic layer deposition

Sung Woon Cho, Cheol Hyoun Ahn, Myeong Gu Yun, So Hee Kim and Hyung Koun Cho*

Thin Solid Films, 2014, 562, 597-602. (IF : 1.939)

[11] All solution processed InGaO3(ZnO)m thin films with layered structure

Sung Woon Cho, Jun Hyeon Kim, Sangwoo Shin, Hyung Hee Cho and Hyung Koun Cho*

Journal of nanomaterials, 2013, 7. (IF : 2.207)

Kyung Su Kim, Cheol Hyoun Ahn, Won Jun Kang, Sung Woon Cho, Sung Hyeon Jung, Dae Ho Yoon, Hyung Koun Cho*

Materials, 2017, 10(5), 530 1-10. (IF: 2.654)

[13] Non-ideal current drop behavior in ultra-thin inorganic a-InGaZnO thin film transistors

Won Jun Kang, Kyung Su Kim, Cheol Hyoun Ahn, Sung Woon Cho, Da Eun Kim, Bora Kim, Hyung Koun Cho* and Yun Seok Kim

Journal of Materials Science: Materials in Electronics, 2017, 28(11), 8231-8237. (IF : 2.019)

[14] All-Solution Processedn n-ZnO Nanorods/i-CdS/p-Cu2O Diodes Prepared Using Diluted Solution Precursors

Jae Hui Shin, Joo Sung Kim, Seung Ki Baek, Sung Woon Cho, Yun Seok Kim and Hyung Koun Cho*

Nanoscience and Nanotechnology Letters, 2017, 9(1), 45-49. (IF : 2.917)

[15] Effects of top-layer thickness on electrical performance and stability in VZTO/ZTO bi-layer thin-film transistors

Myeong Gu Yun, Cheol Hyoun Ahn, Ye Kyun Kim, Sung Woon Cho, Hyung Koun Cho* and Hyoungsub Kim

Journal of Alloys and Compounds, 2016, 672, 449-456. (IF : 3.779, Metallurgy & metallurgical engineering field: top 6.8 %)

[16] Expedient floating process for ultra-thin InGaZnO thin-film-transistors and their high bending performance

Won Jun Kang, Cheol Hyoun Ahn, Myeong Gu Yun, Sung Woon Cho, Ye Kyun Kim, Da Eun Kim, Bora Kim, Hyung Koun Cho* and Yunseok Kim

RSC Advances, 2016, 6(68), 63418-63424. (IF : 2.936)

[17] Periodically pulsed wet annealing approach for low-temperature processable amorphous InGaZnO thin film transistors with high electrical performance and ultrathin thickness

Ye Kyun Kim, Cheol Hyoun Ahn*, Myeong Gu Yun, Sung Woon Cho, Won Jun Kang and Hyung Koun Cho*

Scientific reports, 2016, 6, 26287. (IF : 4.122)

[18] Low voltage-driven oxide phototransistors with fast recovery, high signal-to-noise ratio, and high responsivity fabricated via a simple defect-generating process

Myeong Gu Yun, Ye Kyun Kim, Cheol Hyoun Ahn, Sung Woon Cho, Won Jun Kang, Hyung Koun Cho* and Yong-Hoon Kim

Scientific reports, 2016, 6, 31991. (IF : 4.122)

[19] Dual electrical behavior of multivalent metal cation-based oxide and its application to thin film transistors with high mobility and excellent photo-bias stability

Myeong Gu Yun, Cheol Hyoun Ahn, Sung Woon Cho, So Hee Kim, Ye Kyun Kim and Hyung Koun Cho*

ACS Applied Materials & Interfaces, 2015, 7(11), 6118-6124. (IF : 8.456, Materials science, multidisciplinary field: top 9 %)