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All publications

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A Lab-scale Spin and Angular Resolved Photoemission Spectroscopy Capability for 2D Valleytronics

Fabio Bussolotti, Zheng Zhang, Hiroyo Kawai, and Kuan Eng Johnson Goh*, “A Lab-scale Spin and Angular Resolved Photoemission Spectroscopy Capability for 2D Valleytronics”, MRS Advances 2, 1527 (2017).

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Enriched Fluorescence Emission from Tungsten Disulfide Monoflake Empowered by Au Nanoexplorers

Belle Miaoer SOW, Junpeng LU, Hongwei LIU, Kuan Eng Johnson GOH, and Chorng Haur SOW, “Enriched Fluorescence Emission from WS2 Monoflake Empowered by Au Nanoexplorers”, Advanced Optical Materials 5, 1700156 (2017).

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Electronic properties of atomically thin Molybdenum Disulfide layers grown by physical vapour deposition: band structure and energy level alignment at layer/substrate interfaces

Fabio Bussolotti, Jianwei Chai, Ming Yang, Hiroyo Kawai, Zheng Zhang, Shijie Wang, Swee Liang Wong, Carlos Manzano, Yuli Huang, Dongzhi Chi and Kuan Eng Johnson Goh, “Electronic properties of atomically thin MoS2 layers grown by physical vapour deposition: band structure and energy level alignment at layer/substrate interfaces”, RCS Advances 8, 7744 (2018).

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Interlayer interactions in 2D Tungsten disulfide/Molybdenum disulfide heterostructures monolithically grown by in situ physical vapor deposition

Weifeng Yang, Hiroyo Kawai, Michel Bosman, Baoshan Tang, Jianwei Chai, Wei Le Tay, Jing Yang, Hwee Leng Seng, Huili Zhu, Hao Gong, Hongfei Liu, Kuan Eng Johnson Goh, Shijie Wang, Dongzhi Chi, “Interlayer interactions in 2D WS2/MoS2 heterostructures monolithically grown by in situ physical vapor deposition”, Nanoscale 10, 22927 (2018).

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Modification of Vapor Phase Concentrations in Molybdenum Disulfide Growth Using a Nickel Oxide Foam Barrier

Yee-Fun Lim, Kumar Priyadarshi, Fabio Bussolotti, Pranjal Kumar Gogoi, Xiaoyang Cui, Ming Yang, Jisheng Pan, Shi Wun Tong, Shijie Wang, Stephen J Pennycook, Kuan Eng Johnson Goh, Andrew TS Wee, Swee Liang Wong, Dongzhi Chi, “Modification of Vapor Phase Concentrations in MoS2 Growth Using a NiO Foam Barrier”, ACS Nano 12, 1339 (2018).

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