Center for Integrated Nanostructure Physics

Center for Integrated Nanostructure Physics

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Two-dimensional semiconducting and single-crystalline antimony trioxide directly-grown on monolayer graphene 30/11/2020

[New journal!]

Qinke Wu, Taehwan Jeong, Sanwoo Park, Jia Sun, Hyunmin Kang, Taegeun Yoon, Young Jae Song [Chemical Communications 55(17), Feb. 28 , 2473-2476(2019)

Two-dimensional semiconducting and single-crystalline antimony trioxide directly-grown on monolayer graphene The first successful synthesis and characterization of single-crystalline two-dimensional (2D) semiconducting antimony tri oxide (Sb2O3) by direct chemical v***r deposition (CVD) growth on monolayer graphene is presented herein. The Sb2O3 flakes on graphene are regular triangles with smooth edges an...

Tunable Negative Differential Resistance in van der Waals Heterostructures at Room Temperature by Tailoring the Interface 30/11/2020

[New journal!]

Sidi Fan, Quoc An Vu, Sanghyub Lee, Thanh Luan Phan, Gyeongtak Han, Young-Min Kim, Woo Jong Yu, Young Hee Lee [ACS Nano 13(7), Jul. 23 , 8193-8201(2019) ]

Tunable Negative Differential Resistance in van der Waals Heterostructures at Room Temperature by Tailoring the Interface Vertically stacked two-dimensional van der Waals (vdW) heterostructures, used to obtain homogeneity and band steepness at interfaces, exhibit promising performance for band-to-band tunneling (BTBT) devices. Esaki tunnel diodes based on vdW heterostructures, however, yield poor current density and pe...

Single-Crystalline Monolayer Graphene Wafer on Dielectric Substrate of SiON without Metal Catalysts 30/11/2020

[New journal!]

B**g Gyu Shin, Dae Hwan Boo, Bumsub Song, Sunam Jeon, Minwoo Kim, Sangwoo Park, Eun Soo An, Jun Sung Kim, Young Jae Song, Young Hee Lee [ACS Nano 13(6), Jun. 25 , 6662-6669(2019) ]

Single-Crystalline Monolayer Graphene Wafer on Dielectric Substrate of SiON without Metal Catalysts Many scientific and engineering efforts have been made to realize graphene electronics by fully utilizing intrinsic properties of ideal graphene for last decades. The most technical huddles come from the absence of wafer-scale graphene with a single-crystallinity on dielectric substrates. Here, we r...

Designing bifunctional catalysts for oxygen reduction/evolution reactions for high efficiency and long lifetime 30/05/2019

[New Journal!]
NiranjanmurthiLingappan, Bing Li, Tae Hoon Lee, Young Hee Lee [Electrochimica Acta 313, Aug. 1 , 41-47(2019) ]

Designing bifunctional catalysts for oxygen reduction/evolution reactions for high efficiency and long lifetime Designing efficient and durable bifunctional oxygen catalyst to replace expensive Pt catalysts in oxygen reduction reaction and oxygen evolution react…

Carbon-based asymmetric capacitor for high-performance energy storage devices 30/05/2019

[New Journal!]
Doyoung Kim, Keunsik Lee, Meeree Kim, Yongshin Kim, Hyoyoung Lee [Electrochimica Acta 300, Mar. 20 , 461-469(2019) ]

Carbon-based asymmetric capacitor for high-performance energy storage devices Carbon-based materials are widely used in energy storage research, as attractive materials with high conductivity, low cost, and high availability. Ho…

Single-crystalline Cu2O thin films of optical quality as obtained by the oxidation of single-crystal Cu thin films at low temperature 30/05/2019

[New Journal!]
Taewoo Ha, Inhee Park, Kyung Ik Sim, Howon Lee, Jong-Sung Bae, Su Jae Kim, Jong Phil Kim, Teun-Teun Kim, Jae Hoon Kim, Joon Ik Jang, ANd Se-Young Jeong [APL Materials 7(3), Mar. 27 , 031115-(2019) ]

Single-crystalline Cu2O thin films of optical quality as obtained by the oxidation of single-crystal Cu thin films at low temperature High-quality, single-crystal-like Cu2O thin films of various thicknesses (10 nm–45 nm) were prepared at a low temperature (150 °C) by controlling layer-by-layer oxidation of wafer-scale Cu thin films sputtered along the (111) direction using a pure single-crystal Cu target. The cross-sectional im...

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Suwon
16419

Opening Hours

Monday 09:00 - 17:30
Tuesday 09:00 - 17:30
Wednesday 09:00 - 17:30
Thursday 09:00 - 17:30
Friday 09:00 - 17:30