Publications

2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016

journal_cover


(Selected)

2018

D. K. Loke, G. J. Clausen, J. F. Ohmura, T. C. Chong, A. M. Belcher. Biological-Templating of a Segregating Binary Alloy for Nanowire-Like Phase-Change Materials and Memory. ACS Appl. Nano Mater. DOI: 10.1021/acsanm.8b01508

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advmater-paper-2015

D. K. Loke, J. M. Skelton, T. H. Lee, R. Zhao, T. C. Chong and S. R. Elliott. Ultrafast Nanoscale Phase-Change Memory Enabled by Single-Pulse Conditioning. ACS Appl. Mater. Interfaces 10, 41855-41860 (2018).

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advmater-paper-2015

S. S. Y. Chan, Y.-S. Tan, K.-X. Wu, C. Cheung and D. K. Loke. Ultra-High Signal Detection of Human Embryonic Stem Cells Driven by Two-Dimensional Materials. ACS Appl. Bio Mater. 1, 210-215 (2018).

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advmater-paper-2015

2016

D. Loke, J. M. Skelton, T. C. Chong and S. R. Elliott. Design of a Nanoscale, CMOS-Integrable, Thermal-Guiding Structure for Boolean-Logic and Neuromorphic Computation. ACS Appl. Mater. Interfaces 1, 210-215 (2018).

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advmater-paper-2015

T. H. Lee, D. Loke, S. R. Elliott. Microscopic Mechanism of Doping-Induced Kinetically Constrained Crystallization in Phase-Change Materials. Adv. Mater. 37, 5477–5483 (2015).

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advmater-paper-2015

J. M. Skelton, D. Loke, T. H. Lee, S. R. Elliott. Ab Initio Molecular-Dynamics Simulation of Neuromorphic Computing in Phase-Change Memory Materials. ACS Appl. Mater. Interfaces 7, 14223-14230 (2015).

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acsami-paper-2015

2014

D. Loke, J. M. Skelton, W. J. Wang, T. H. Lee, R. Zhao, T. C. Chong, S. R. Elliott. Ultrafast Phase-Change Logic Device Driven by Melting Processes. Proc. Nat. Acad. Sci. USA 11, 13272-13277 (2014).

1-copy

D. Loke, J. M. Skelton, L. T. Law, W. J. Wang, M. H. Li, W. D. Song, T. H. Lee, S. R. Elliott. Guest-Cage Atomic Interactions in a Clathrate-based Phase-Change Material. Adv. Mater. 26, 1725-1730 (2014).

clathrate

T. H. Lee, D. Loke, K. J. Huang, W. J. Wang, S. R. Elliott. Tailoring Transient-Amorphous States: Towards Fast and Power-Efficient Phase-Change Memory and Neuromorphic Computing. Adv. Mater. 26, 7493-7498 (2014).

advmater-2014

2013

J. M. Skelton, D. Loke, T. H. Lee, S. R. Elliott. Structural Insights into the Formation and Evolution of Amorphous Phase-Change Materials. Phys. Status Solidi B 250, 968-975 (2013).

pssb-paper-2013

2012

D. Loke, T. H. Lee, W. J. Wang, L. P. Shi, R. Zhao, Y. C. Yeo, T. C. Chong, S. R. Elliott. Breaking the Speed Limits of Phase-Change Memory. Science 336, 1566-1569 (2012).

science-paper

D. Loke, L. P. Shi, W. J. Wang, R. Zhao, L. T. Ng, K. G. Lim, H. X. Yang, T. C. Chong, Y. C. Yeo. Nano Superlattice-like Materials as Thermal Insulators for Phase-Change Random Access Memory. Mater. Res. Soc. Symp. Proc. 1404, 1-6 (2012).

W. J. Wang, D. Loke, L. P. Shi, R. Zhao, H. X. Yang, L. T. Law, L. T. Ng, K. G. Lim, Y. C. Yeo, T. C. Chong, A. L. Lacaita. Enabling Universal Memory by Overcoming the Contradictory Speed and Stability Nature of Phase-Change Materials. Sci. Rep. 2, 360 (2012).

J. M. Skelton, D. Loke, T. H. Lee, S. R. Elliott. Understanding the Multistate SET Process in Ge-Sb-Te-based Phase-Change Memory. J. Appl. Phys. 112, 064901-1-5 (2012).

W. J. Wang, D. Loke, L. T. Law, L. P. Shi, R. Zhao, M. H. Li, L. L. Chen, H. X. Yang, Y. C. Yeo, A. O. Adeyeye, T. C. Chong, A. L. Lacaita. Engineering Grains of Ge2Sb2Te5 for Realizing Fast-Speed, Low-Power, and Low-Drift Phase-Change Memories with Further Multilevel Capabilities. IEEE Int. Elect. Dev. Meeting Tech. Dig., 31.3.1-4 (2012).

2011

D. Loke, L. P. Shi, W. J. Wang, R. Zhao, H. X. Yang, L. T. Ng, K. G. Lim, T. C. Chong, Y. C. Yeo. Ultrafast Switching in Nanoscale Phase-Change Random Access Memory with Superlattice-like Structures. Nanotechnology 22, 254019-1-6 (2011).

2010

D. Loke, L. P. Shi, W. J. Wang, R. Zhao, L. T. Ng, K. G. Lim, H. X. Yang, T. C. Chong, Y. C. Yeo. Superlatticelike Dielectric as a Thermal Insulator for Phase-Change Random Access Memory. Appl. Phys. Lett. 97, 243508-1-3 (2010).

2009

W. J. Wang, L. Shi, R. Zhao, D. Loke, H. X. Yang, K. G. Lim, H. K. Lee, T. C. Chong. Nanoscaling of Phase Change Memory Cells for High Speed Memory Applications. Jpn J. of Appl. Phys. 48, 04C060-1-4 (2009).