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Lin Wang

Lin Wang is a research scientist at HPSync and a senior investigator work for EFree. His principal research interests are the properties of nano materials under high pressure; Synthesis of nano materials, Properties of low dimensional materials and High Tc superconductor, Nano focused Synchrotron x-ray, and diamond anvil cell techniques for ultra-high pressure.

 

Publications:

1. Wang L.*, B. Liu, H. Li, W. Yang, Y. Ding, S. Sinogeikin, Y. Meng, Z. Liu, X. Zeng, W. L. Mao, Long-Range Ordered Carbon Clusters: A Crystalline Materials with Amorphous Building Blocks. Science, 327, 825-828, 2012.

2. Wang L.*, Ding Y., Patel U., Yang W., Xiao Z., Cai Z., Mao W. L. and Mao H.K., Studing single nanocrystals under high pressure using an x-ray nanoprobe. Review of Scientific Instruments 82, 043903 (2011).

3. Wang L.*, W. Yang, Y. Xiao, B. Liu, P. Chow, G. Shen, W. Mao, and H. K. Mao, Application and new assembly of c-BN gasket in high pressure IXS studies of carbon related materials. Review of Scientific Instruments 82, 073902 (2011).

4. Q. Zeng, H. Sheng, Y. Ding, L. Wang, W. Yang, J. Jiang, W. Mao, H. K. Mao, Long-rang topological order in metallic glass. Science, 332, 1404 (2011). 

5. Wang L.*, Yang W.G., Ding Y., Yang R., Xiao S.G., Liu B.B., Sinogeikin S., Meng Y., Shen G.Y., Hemley R.J., Mao W.L., and Mao H.K., Size-Dependent Amorphization of Nanoscale Y2O3 at High Pressure. Phys. Rev. Lett. 105, 095701 (2010). 

6. Wang L., Ding Y., Yang, W., Liu, W., Cai, Z., Kung, J., Shu, J., Hemley, J. R., Mao, L.W., and Mao, H.K., Nanoprobes measurements of materials at megabar pressures. Proc. Nat. Acad. Sci. 107, 6140-6145 (2010).

7. Wang L.*, Pan Y.X., Ding Y., Yang W.G., Mao W.L., Sinogeikin S.V. Meng Y., Shen G.Y., Mao H.K., High-pressure induced phase transitions of Y2O3 and Y2O3:Eu3+. Applied Physics Letters 94, 061921 (2009).

8. Mao W.L., Wang L., Ding Y., Yang W.G., Liu W.J., Kim D.Y. Luo W. Ahuja R., Meng Y. Sinogeikin S. Shu J.F. and Mao H.K., Distortions and stabilition of simple primitive calcium at high pressure and low temperature. Proc. Nat. Acad. Sci. 107, 9965 (2010).

9. M. Xu, Y. Q. Cheng, L. Wang, H. W. Sheng, Y. Meng, W. G. Yang, X. D. Han, and E. Ma, Pressure tunes electrical resistivity by four orders of magnitude in amorphous Ge2Sb2Te5 phase-change memory alloy.Proc. Nat. Acad. Sci. 109, E1055-E1062, 2012. 

10. L.L. Sun, X.J. Chen, J. Guo, P. Gao, Q. Huang, H. Wang, M. Fang, X. Chen, G. Chen, Q. Wu, C. Zhang, D. Gu, X. Dong, L. Wang, K. Yang, A. Li, X. Dai, H. K. Mao and Z. X. Zhao, Re-emerging superconductivity at 48 kelvin in iron chalcogenides. Nature, 483, 67-69, 2012.

11. Wang L., Liu, B. B., Liu, D. D., Yao, M. G., Yu, S. D., Hou, Y. Y., Cui, T., Zou, G. T., Sundqvist, B., Luo, Z. J., Li, H., Li Y. C., Liu, J., Chen, S. J., Wang, G. R., Liu, Y. C., Synthesis and High Pressure Induced Amorphization of C60 Nanosheets. Applied Physics Letters 91, 103112 (2007).