研究论文
146. Yang, Y., Nie, J.F.*, Mao, Q.Z., Zhao, Y.H.*, Improving the combination of electrical conductivity and tensile strength of Al 1070 by rotary swaging deformation. Results in Physics, 2019. 13: 102236.
145. Liu, Y.F., Wang, F., Cao, Y., Nie, J.F., Zhou, H., Yang, H.B., Liu, X.F., An, X.H., Liao, X.Z., Zhao, Y.H., Zhu, Y.T., Unique defect evolution during the plastic deformation of a metal matrix composite. Scripta Materialia, 2019. 162: 316-320.
144. Nie, J.F., Zhao, Y.H., Li, Y.S., Wang, F., Yang, H.B., Hu, K.Q., Liu, G.L., Liu, X.F., Reactive synthesis of hexagonal Ti5P3.16 crystals and their heterogenous nucleating mechanism on primary Si. Journal of Alloys and Compounds, 2019. 777: 8-17.
143. Lu, Y.P., Huang, H.F.*, Zheng, S.J.*, Zhao, Y.H.*, Lu, C.Y., Wang, T.M.*, Li, T.J., A promising new class of irradiation tolerant materials: Ti2ZrHfV0.5Mo0.2 high-entropy alloy. Journal of Materials Science & Technology, 2019. 35(3): 369-37
142. Guo, X.Z., Zhao, Y.H., Zhang, S.H., U-R relationship prediction method for aluminum alloy circular tube free-bending process based on sensitivity analysis of material parameters. Advanced Manufacturing Technology, 2018. 99(5): 1967-1977.
141. Liang, N.N., Zhao, Y.H.*, Li, Y., Zhu, Y.T., Lavernia, E.J., Influence of microstructure on thermal stability of ultrafine-grained Cu processed by equal channel angular pressing. Journal of Materials Science, 2018. 53(18): 13173-13185.
140. Xia, Z.H., Zhang, M., Zhang, Y., Zhao, Y.H., Liaw, P.K., Qiao, J.W., Effects of Ni-P amorphous films on mechanical and corrosion properties of Al0.3CoCrFeNi high-entropy alloys. Intermetallics, 2018. 94: 65-72.
139. Ding, Z.G., Liu, W., Sun, H., Li, S., Zhang, D.L., Zhao, Y.H., Lavernia, E.J., Zhu, Y.T., Origins and dissociation of pyramidal <c+a> dislocations in magnesium and its alloys. Acta Materialia, 2018. 146: 265-272.
138. Liang, N., Liu, J., Lin, S., Wang, Y., Wang, J.T., Zhao, Y., Zhu, Y., A multiscale architectured CuCrZr alloy with high strength, electrical conductivity and thermal stability. Journal of Alloys and Compounds, 2018. 735: 1389-1394.
137. Zou, J.Y., Liu, D.D., Zhao, J.N., Zhao, Y.H., Zhu, Y.T., Li, Q.W., Ni nanobuffer layer provides light-weight CNT/Cu fibers with superior robustness, conductivity, and ampacity. ACS Applied Materials & Interfaces, 2018. 10(9): 8197-8204.
136. Lu, Y.P., Gao, X.X., Dong, Y., Wang, T.M., Chen, H.L., Maob, H.H., Zhao, Y.H.*, Jiang, H., Cao, Z.Q., Li, T.J., Guo, S.*, Preparing bulk ultrafine-microstructure high-entropy alloys via direct solidification. Nanoscale, 2018. 10(4): 1912-1919.
135. Nie, J.F., Li, Y.S., Liu, Y.F., Liu, X.F., Zhao, Y.H.*, Microstructure and mechanical properties of Al-TiB2/TiC in situ composites improved via hot rolling. Transactions of Nonferrous Metals Society of China, 2017. 27(12): 2548-2554.
134. Li, Y.S., Li, L.Z., Nie, J.F., Cao, Y., Zhao, Y.H., Zhu, Y.T., Microstructural evolution and mechanical properties of a 5052 Al alloy with gradient structures. Journal of Materials Research, 2017. 32(23): 4443-4451.
133. Gao, X.Z., Lu, Y.P., Zhang, B., Liang, N.N., Wu, G.Z., Sha, G., Liu, J.Z., Zhao, Y.H.*, Microstructural origins of high strength and high ductility in an AlCoCrFeNi2.1 eutectic high-entropy alloy. Acta Materialia, 2017. 141: 59-66.
132. Zhang, B., Xue, F., Li, S.L., Wang, X.T., Liang, N.N., Zhao, Y.H., Sha, G., Non-uniform phase separation in ferrite of a duplex stainless steel. Acta Materialia, 2017. 140: 388-397.
131. Tang, L.L., Zhao, Y.H.*, Islamgaliev, R.K., Valiev, R.Z., Zhu, Y.T., Microstructure and thermal stability of nanocrystalline Mg-Gd-Y-Zr alloy processed by high pressure torsion. Journal of Alloys and Compounds, 2017. 721: 577-585.
130. Zhang, Y.S., Zhang, W., Wang, X., Lu, J.W., Zhao, Y.H.*, Microstructure and mechanical property evolutions of bulk core-shell structured Ti-N alloys during annealing. Journal of Alloys and Compounds, 2017. 710: 418-423.
129. Wang, X., Li, Y.S., Zhang, Q., Zhao, Y.H., Zhu, Y.T., Gradient structured copper by rotationally accelerated shot peening. Journal of Materials Science & Technology, 2017. 33(7): 758-761.
128. Liu, S.L., Pan, Z.L., Zhao, Y.H.*, Topping, T., Valiev, R.Z., Liao, X.Z., Lavernia, E.J., Zhu, Y.T., Wei, Q.*, Effect of strain rate on the mechanical properties of a gum metal with various microstructures. Acta Materialia, 2017. 132: 193-208.
127. Song, Z.W., Zhao, Y.H., Wu, G.Z., Gao, X.Z. Effect of high pressure torsion on corrosion behavior of high entropy alloy in alkaline solution. in Proceedings of the Advances in Materials, Machinery, Electrical Engineering. 2017. Atlantis Press.
126. Zhang, X.S., Cheng, M., Zhao, Y.H., Ding, Y.X., Research on the collaborative effect of plastic deformation and solution treatment in the intergranular corrosion property of austenite stainless steel. Acta Metall Sin, 2017. 53(3): 335-344.
125. Liang, N.N., Zhao, Y.H.*, Wang, J.T., Zhu, Y.T., Effect of grain structure on Charpy impact behavior of copper. Scientific Reports, 2017. 7(1): 44783.
124. Lu, Y.P., Gao, X.Z., Jiang, L., Ruan, H.H., Zhao, Y.H., Cao, Z.Q., Li, T.J., Directly cast bulk eutectic and near-eutectic high entropy alloys with balanced strength and ductility in a wide temperature range. Acta Materialia, 2017. 124: 143-150.
123. Nie, J.F., Cao, Y., Liu, X.F., Zhao, Y.H.*, Zhu, Y.T., Microstructure evolution and mechanical properties of Al-TiB2/TiC In situ aluminum-based composites during accumulative roll bonding (ARB) Process. Materials, 2017. 10(2): 109.
122. Zhang, Y.S., Zhao, Y.H.*, Zhang, W., Lu, J.W., Hu, J.J., Huo, W.T., Zhang, P.X., Core-shell structured titanium-nitrogen alloys with high strength, high thermal stability and good plasticity. Scientific Reports, 2017. 7(1): 40039.
121. Nie, J.F., Liu, M.X., Zhao, Y.H.*, Li, Y.S., Cao, Y., Zhu, Y.T., Fabrication of Al/Mg/Al composites via accumulative roll bonding and their mechanical properties. Materials, 2016. 9(11): 951.
120. Tang, L.L., Zhao, Y.H.*, Liang, N.N., Islamgaliev, R.K., Valiev, R.Z., Zhu, Y.T., Localized deformation via multiple twinning in a Mg–Gd–Y–Zr alloy processed by high-pressure torsion. Materials Science and Engineering: A, 2016. 677: 68-75.
119. Zou, J.Y., Zhang, X.H., Zhao, J.N., Lei, C.S., Zhao, Y.H., Zhu, Y.T., Li, Q.W., Strengthening and toughening effects by strapping carbon nanotube cross-links with polymer molecules. Composites Science and Technology, 2016. 135: 123-127.
118. Liu, S.L., Li, Y.S., Zhao, Y.H.*, Zhu, Y.T.*, Effect of triple junctions on deformation twinning in a nanostructured Cu–Zn alloy: A statistical study using transmission Kikuchi diffraction. Beilstein Journal of Nanotechnology, 2016. 7: 1501.
117. Tang, L.L., Zhao, Y.H.*, Islamgaliev, R.K., Tsao, C.Y.A., Valiev, R.Z., Lavernia, E.J., Zhu, Y.T., Enhanced strength and ductility of AZ80 Mg alloys by spray forming and ECAP. Materials Science and Engineering: A, 2016. 670: 280-291.
116. Tang, L.L., Liu, W.*, Ding, Z.G., Zhang, D.L., Zhao, Y.H.*, Lavernia, E.J., Zhu, Y.T., Alloying Mg with Gd and Y: Increasing both plasticity and strength. Computational Materials Science, 2016. 115: 85-91.
115. Ding, Z.G., Liu, W., Li, S., Zhang, D.l., Zhao, Y.H., Lavernia, E.J., Zhu, Y.T., Contribution of van der Waals forces to the plasticity of magnesium. Acta Materialia, 2016. 107: 127-132.
114. Wu, Y.F., Li, S., Ding, Z.G., Liu, W., Zhao, Y.H., Zhu, Y.T., Effect of charge redistribution factor on stacking-fault energies of Mg-based binary alloys. Scripta Materialia, 2016. 112: 101-105.
113. Liu, H.X., Zhou, J.Q.*, Zhao, Y.H.*, Modeling the deformation behavior of nanocrystalline alloy with hierarchical microstructures. Journal of Nanoparticle Research, 2016. 18(2): 42.
112. Li, X., Jiang, J.H., Zhao, Y.H., Ma, A.B., Wen, D.J., Zhu, Y.T., Effect of equal-channel angular pressing and aging on corrosion behavior of ZK60 Mg alloy. Transactions of Nonferrous Metals Society of China, 2015. 25(12): 3909-3920.
111. Kulyasova, O.B., Islamgaliev, R.K., Zhao, Y.H., Valiev, R.Z., Enhancement of the mechanical properties of an Mg–Zn–Ca alloy using high-pressure torsion. Advanced Engineering Materials, 2015. 17(12): 1738-1741.
110. Liu, X.R., Wei, D.J., Zhuang, L.M., Cai, C., Zhao, Y.H.*, Fabrication of high-strength graphene nanosheets/Cu composites by accumulative roll bonding. Materials Science and Engineering: A, 2015. 642: 1-6.
109. Nie, J.F., Zhao, Y.H., Wang, E.Z., Liu, X.F., Study on the evolution processes from TiCx to TiB2 induced by B in Al melt. Materials Characterization, 2015. 100: 68-73.
108. Li, S., Wu, Y.F., Tu, Y., Wang, Y.H., Jiang, T., Liu, W., Zhao, Y.H.*, Defects in silicene: Vacancy clusters, extended line defects and di-adatoms. Scientific Reports, 2015. 5(1): 7881.
107. Jiang, Y.D., Yang, S., Li, S., Liu, W., Zhao, Y.H., Highly sensitive CO gas sensor from defective graphene: Role of van der Waals interactions. Journal of Nanomaterials, 2015. 2015(1): 504103.
106. Ding, Z.G., Li, S., Liu, W., Zhao, Y.H.*, Modeling of stacking fault energy in hexagonal-close-packed metals. Advances in Materials Science and Engineering, 2015. 2015(1): 639519.
105. Kulyasova, O., Islamgaliev, R., Zhao, Y.H., Valiev, R., Microstructure and mechanical properties of ultrafinegrained Mg-Zn-Ca alloy. IOP Conference Series: Materials Science and Engineering, 2014. 63(1): 012142.
104. Li, S., Wu, Y., Liu, W., Zhao, Y.*, Control of band structure of van der Waals heterostructures: Silicene on ultrathin silicon nanosheets. Chemical Physics Letters, 2014. 609: 161-166.
103. Sun, P.L., Zhao, Y.H., Tseng, T.Y., Su, J.R., Lavernia, E.J., Annealing behaviour of ultrafine-grained aluminium. Philosophical Magazine, 2014. 94(5): 476-491.
102. Xie, K.Y., Wang, Y., Zhao, Y.H., Ringer, S.P., Nanocrystalline β-Ti alloy with high hardness, low Young's modulus and excellent in vitro biocompatibility for biomedical applications. Materials Science and Engineering: C, 2013. 33(6): 3530-3536.
101. Li, Y.K., Liu, F., Zheng, G.P., Pan, D., Zhao, Y.H., Wang, Y.M., Strength scaling law, deformation kinetics and mechanisms of nanostructured Ti. Materials Science and Engineering: A, 2013. 573: 141-147.
100. Wang, Y.B., Liao, X.Z., Zhao, Y.H., Cooley, J.C., Horita, Z., Zhu, Y.T., Elemental separation in nanocrystalline Cu-Al alloys. Applied Physics Letters, 2013. 102(23): 231912.
99. Li, L., Qian, C.X., Zhao, Y.H., Zhu, Y.T., Computational modeling of sand cementation by bio-mineral CaCO3. Materials Science Forum, 2013. 749: 535-539.
98. Li, L., Qian, C.X., Zhao, Y.H., Zhu, Y.T., Enzyme kinetic characterization of microbe-produced urease for microbe-driven calcite mineralization. Reaction Kinetics, Mechanisms and Catalysis, 2013. 108(1): 51-57.
97. Li, L., Qian, C.X., Zhao, Y.H., Pores and microanalysis of microbe-inspired nano-CaCO3 cementing sand columns. Journal of Nanomaterials, 2013. 2013(1): 826816.
96. Li, L., Fu, M.L., Zhao, Y.H., Zhu, Y.T., Characterization of carbonic anhydrase II from Chlorella vulgaris in bio-CO2 capture. Environmental Science and Pollution Research, 2012. 19(9): 4227-4232.
95. Wen, H.M., Zhao, Y.H., Lavernia, E.J., Influence of pressing temperature on microstructure evolution and mechanical behavior of ultrafine-grained Cu by equal-channel angular pressing. Advanced Engineering Materials, 2012. 14(3): 185-194.
94. Wongsa-Ngam, J., Kawasaki, M., Zhao, Y.H., Langdon, T.G., Microstructural evolution and mechanical properties of a Cu–Zr alloy processed by high-pressure torsion. Materials Science and Engineering: A, 2011. 528(25): 7715-7722.
93. Zhao, Y.H.*, Topping, T., Li, Y., Lavernia, E.J., Strength and ductility of Bi-modal Cu. Advanced Engineering Materials, 2011. 13(9): 865-871.
92. Ni, S., Wang, Y.B., Liao, X.Z., Li, H.Q., Zhao, Y.H., Lavernia, E.J., Langdon, T.G., Zhu, Y.T., Strain softening in nanocrystalline Ni–Fe alloy induced by large HPT revolutions. Materials Science and Engineering: A, 2011. 528(13): 4807-4811.
91. Wen, H.M., Zhao, Y.H., Zhang, Z.H., Lavernia, E.J., The influence of oxygen and nitrogen contamination on the densification behavior of cryomilled copper powders during spark plasma sintering. Journal of Materials Science, 2011. 46(9): 3006-3012.
90. Ni, S., Wang, Y.B., Zhao, Y.H., Lavernia, E.J., Langdon, T.G., Zhu, Y.T., Strain hardening and softening in a nanocrystalline Ni–Fe alloy induced by severe plastic deformation. Materials Science and Engineering: A, 2011. 528(9): 3398-3403.
89. Ni, S., Wang, Y.B., Liao, X.Z. , Li, H.Q., Zhao, Y.H., Lavernia, E.J., Zhu, Y.T., Grain growth and dislocation density evolution in a nanocrystalline Ni–Fe alloy induced by high-pressure torsion. Scripta Materialia, 2011. 64(4): 327-330.
88. Zhao, Y.H., Lavernia, E.J., The mechanical properties of multi-scale metallic materials, in Nanostructured Metals and Alloys, Whang, S.H., Editor. 2011, Woodhead Publishing. p. 375-429.
87. Wen, H.M., Zhao, Y.H., Li, Y., Ertorer, O., Nesterov, K.M., Islamgaliev, R.K., Valiev, R.Z., Lavernia, E.J., High-pressure torsion-induced grain growth and detwinning in cryomilled Cu powders. Philosophical Magazine, 2010. 90(34): 4541-4550.
86. Huang, L., Zhang, Z.H., Zhao, Y.H., Yao, W.L., Mukherjee, A.K., Schoenung, J.M., Scratch-induced deformation in fine- and ultrafine-grained bulk alumina. Scripta Materialia, 2010. 63(5): 528-531.
85. Wang, Y.B., Zhao, Y.H., Lian, Q., Liao, X.Z., Valiev, R.Z., Ringer, S.P., Zhu, Y.T., Lavernia, E.J., Grain size and reversible beta-to-omega phase transformation in a Ti alloy. Scripta Materialia, 2010. 63(6): 613-616.
84. Zhu, Y.T., Mathaudhu, S.N., Goken, M., Langdon, T.G., Lowe, T.C., Semiatin, S.L., Tsuji, N., Zhao, Y.H.*, Preface to the special issue on ultrafine grained materials. Journal of Materials Science, 2010. 45: 4543-4544.
83. Zhao, Y.H., Zhu, Y.T., Lavernia, E.J., Strategies for improving tensile ductility of bulk nanostructured materials. Advanced Engineering Materials, 2010. 12(8): 769-778.
82. Sun, P.L., Zhao, Y.H., Lavernia, E.J., The influence of cooling rate on the microstructures and mechanical properties in ultrafine-grained aluminum processed by hot rolling. Materials Science and Engineering: A, 2010. 527(20): 5287-5294.
81. Wang, Y.B., Zhao, Y.H.*, Lavernia, E.J., Zhu, Y.T., The role of stacking faults and twin boundaries in grain refinement of a Cu–Zn alloy processed by high-pressure torsion. Materials Science and Engineering: A, 2010. 527(18): 4959-4966.
80. Cheng, S., Zhao, Y.H.*, Wang, Y.M., Li, Y., Wang, X.-L., Liaw, P.K., Lavernia, E.J., Structure modulation driven by cyclic deformation in nanocrystalline NiFe. Physical Review Letters, 2010. 104(25): 255501.
79. Li, Y., Zhao, Y.H., Liu, W., Xu, C., Liao, X.Z., Zhu, Y.T., Langdon, T.G., Lavernia, E.J., Influence of grain size on the density of deformation twins in Cu–30%Zn alloy. Materials Science and Engineering: A, 2010. 527(16): 3942-3948.
78. Ferragut, R., Liddicoat, P.V., Liao, X.Z., Zhao, Y.H., Lavernia, E.J., Valiev, R.Z., Ringer, S.P., Chemistry of grain boundary environments in nanocrystalline Al 7075. Journal of Alloys and Compounds, 2010. 495(2): 391-393.
77. Zhao, Y.H.*, Zhan, Q., Topping, T.D., Li, Y., Liu, W., Lavernia, E.J., Improving ductility in ultrafine grained nickel with porosity and segregation via deformation. Materials Science and Engineering: A, 2010. 527(7): 1744-1750.
76. Ertörer, O., Topping, T.D., Li, Y., Zhao, Y.H., Moss, W., Lavernia, E.J., Strategies for improving ductility of cryomilled nanostructured titanium. Materials Science Forum, 2010. 633-634: 459-469.
75. Chew, E., Kim, H.H., Ferraris, C., Zhao, Y.H., Lavernia, E.J., Wong, C.C., Effect of ppm level dopant on ductility of ultrafine grained gold wires. Materials Science Forum, 2010. 633-634: 449-457.
74. Zhao, Y.H.*, Guo, Y.z., Zhu, Y.T., Lavernia, E., Influence of specimen dimensions and strain measurement methods on the apparent ductility of bulk nanostructured materials, in Minerals, Metals and Materials Society. 2010.
73. Liu, J., Shen, Z.J., Yao, W.L., Zhao, Y.H., Mukherjee, A.K., Visible and infrared transparency in lead-free bulk BaTiO3 and SrTiO3 nanoceramics. Nanotechnology, 2010. 21(7): 075706.
72. Liddicoat, P.V., Liao, X.Z., Zhao, Y.H., Zhu, Y.T., Lavernia, E.J., Valiev, R.Z., Ringer, S.P., Nanostructural hierarchy increases the strength of aluminium alloys. Nature Communications, 2010. 1(1): 63.
71. Li, Y., Zhao, Y.H., Liu, W., Vogt, R.G., Lavernia, E.J., Schoenung, J.M., Deformation twinning in boron carbide particles within nanostructured Al 5083/B4C metal matrix composites. Philosophical Magazine, 2010. 90(6): 783-792.
70. Cheng, S., Zhao, Y.H.*, Guo, Y.Z., Li, Y., Wei, Q.M., Wang, X.-L., Ren, Y., Choo, H., Lavernia, E.J., High plasticity and substantial deformation in nanocrystalline NiFe alloys under dynamic loading. Advanced Materials, 2009. 21(48): 5001-5004.
69. Liu, W., Zhao, Y.H., Zhang, R.Q., Li, Y., Lavernia, E.J., Jiang, Q., Oxidation of CO catalyzed by a Cu cluster: Influence of an electric field. ChemPhysChem, 2009. 10(18): 3295-3302.
68. Li, Y., Zhao, Y.H., Ortalan, V., Liu, W., Zhang, Z.H., Vogt, R.G., Lavernia, E.J., Schoenung, J.M., Investigation of aluminum-based nanocomposites with ultra-high strength. Materials Science and Engineering: A, 2009. 527(1): 305-316.
67. Liu, W., Zhao, Y.H., Nguyen, J., Li, Y., Jiang, Q., Lavernia, E.J., Electric field induced reversible switch in hydrogen storage based on single-layer and bilayer graphenes. Carbon, 2009. 47(15): 3452-3460.
66. Zhao, Y.H., Li, Y., Topping, T.D., Liao, X.Z., Zhu, Y.T., Valiev, R.Z., Lavernia, E.J., Ductility of ultrafine-grained copper processed by equal-channel angular pressing. International Journal of Materials Research, 2009. 100(12): 1647-1652.
65. Sun, P.-L., Zhao, Y.H., Lavernia, E.J., Zhu, Y.T., Effect of stacking fault energy on strength and ductility of nanostructured alloys: An evaluation with minimum solution hardening. Materials Science and Engineering: A, 2009. 525(1): 83-86.
64. Zhao, Y.H.*, Guo, Y.Z., Wei, Q., Topping, T.D., Zhu, Y.T., Langdon, T.G., Lavernia, E.J., Influence of specimen dimensions and strain measurement methods on tensile stress–strain curves. Materials Science and Engineering: A, 2009. 525(1): 68-77.
63. Wang, Y.B., Ho, J.C., Cao, Y., Liao, X.Z., Li, H.Q., Zhao, Y.H., Lavernia, E.J., Ringer, S.P., Zhu, Y.T., Dislocation density evolution during high pressure torsion of a nanocrystalline Ni–Fe alloy. Applied Physics Letters, 2009. 94(9): 091911.
62. Liu, W., Zhao, Y.H.*, Li, Y., Jiang, Q., Lavernia, E.J., Enhanced hydrogen storage on Li-dispersed carbon nanotubes. The Journal of Physical Chemistry C, 2009. 113(5): 2028-2033.
61. Wang, Z.W., Wang, Y.B., Zhao, Y.H., Lavernia, E.J., Zhu, Y.T., Langdon, T.G., Influence of stacking fault energy on deformation mechanism and dislocation storage capacity in ultrafine-grained materials. Scripta Materialia, 2009. 60(1): 52-55.
60. Liu, W., Zhao, Y.H., Li, Y., Lavernia, E.J., Jiang, Q., A reversible switch for hydrogen adsorption and desorption: electric fields. Physical Chemistry Chemical Physics, 2009. 11(40): 9233-9240.
59. Zhao, Y.H., Liao, X.Z., Horita, Z., Langdon, T.G., Zhu, Y.T., Determining the optimal stacking fault energy for achieving high ductility in ultrafine-grained Cu–Zn alloys. Materials Science and Engineering: A, 2008. 493(1): 123-129.
58. Zhao, Y.H.*, Guo, Y.Z., Wei, Q., Dangelewicz, A.M., Xu, C., Zhu, Y.T., Langdon, T.G., Zhou, Y.Z., Lavernia, E.J., Influence of specimen dimensions on the tensile behavior of ultrafine-grained Cu. Scripta Materialia, 2008. 59(6): 627-630.
57. Zhao, Y.H., Topping, T., Bingert, J.F., Thornton, J.J., Dangelewicz, A.M., Li, Y., Liu, W., Zhu, Y.T., Zhou, Y.Z., Lavernia, E.J., High tensile ductility and strength in bulk nanostructured nickel. Advanced Materials, 2008. 20(16): 3028-3033.
56. Li, Y., Zhao, Y.H., Zhang, Z.H., Liu, W., Ortalan, V., Zhou, Y.Z., Ma, X.L., Lavernia, E.J., SnO2 nanobelts and nanocrystals: Synthesis, characterization and optical properties. Journal of Crystal Growth, 2008. 310(18): 4226-4232.
55. Cheng, S., Choo, H., Zhao, Y.H., Wang, X.L., Zhu, Y.T., Wang, Y.D., Almer, J., Liaw, P.K., Jin, J.E., Lee, Y.K., High ductility of ultrafine-grained steel via phase transformation. Journal of Materials Research, 2008. 23(6): 1578-1586.
54. Liu, W., Zhao, Y.H., Lavernia, E.J., Jiang, Q., Size-dependent deformation and adsorption behavior of carbon monoxide, hydrogen, and carbon on pyramidal copper clusters. The Journal of Physical Chemistry C, 2008. 112(20): 7672-7677.
53. Zhao, Y.H., Bingert, J.F., Zhu, Y.T., Liao, X.Z., Valiev, R.Z., Horita, Z., Zhou, Y.Z., Lavernia, E.J., Tougher ultrafine grain Cu via high-angle grain boundaries and low dislocation density. Applied Physics Letters, 2008. 92(8): 081903.
52. Zhao, Y.H., Horita, Z., Langdon, T.G., Zhu, Y.T., Evolution of defect structures during cold rolling of ultrafine-grained Cu and Cu–Zn alloys: Influence of stacking fault energy. Materials Science and Engineering: A, 2008. 474(1): 342-347.
51. Balogh, L., Ungár, T., Zhao, Y., Zhu, Y.T., Horita, Z., Xu, C., Langdon, T.G., Influence of stacking-fault energy on microstructural characteristics of ultrafine-grain copper and copper–zinc alloys. Acta Materialia, 2008. 56(4): 809-820.
50. Zhang, X.F., Li, Q.W., Arendt, P.N., Huang, J.Y., Kirven, P.D., Clapp, T.G., Liao, X.Z., Zhao, Y.H., Zheng, L.X., Peterson, D.E., Zhu, Y.T., Ultrastrong, stiff, and lightweight carbon-nanotube fibers. Advanced Materials, 2007. 19(23): 4198-4201.
49. Li, Q.W., Li, Y., Zhang, X.F., Zhao, Y.H., Zheng, L.X., Doorn, S.K., Jia, Q.X., Peterson, D.E., Arendt, P.N., Zhu, Y.T., Structure-dependent electrical properties of carbon nanotube fibers. Advanced Materials, 2007. 19(20): 3358-3363.
48. Cheng, S., Zhao, Y.H., Zhu, Y.T., Ma, E., Optimizing the strength and ductility of fine structured 2024 Al alloy by nano-precipitation. Acta Materialia, 2007. 55(17): 5822-5832.
47. Zheng, L., Zhang, X., Li, Q., Chikkannanavar, S.B., Li, Y., Zhao, Y.H., Liao, X., Jia, Q., Doom, S.K., Peterson, D.E., Zhu, Y.T., Carbon-nanotube cotton for large-scale fibers. Advanced Materials, 2007. 19(18): 2567-2570.