Prof SX Dou Homepage - Research Strength. Contact Details. Institute for Superconducting & Electronic Materials. Australian Institute of Innovative Materials, University of Wollongong,Innovation Campus, Squires Way, North Wollongong, NSW 2. Australia. Office Location: 2. Room 1. 43. Phone: +6. Fax: +6. 1 2 4. 22. E- mail: shi. He received his Ph. D in chemistry at Dalhousie University, Canada. He was elected as a Fellow of the Australian Academy of Technological Science and Engineering in 1. He was awarded a DSc by the University of New South Wales in 1. Australian Professorial Fellowships by Australian Research Council in 1. He received the Australian Government’s Centenary Medal in 2. Engineering Excellence Award highly commended in 2. Eurek Award for Science Leadership in 2. Eurek Award for mentoring, Vice- Chancellors Senior Excellence Award in 2. Vice- Chancellor Outstanding Partnership Award in 2. He is program leader for ongoing Automotive CRC 2. He has supervised 8. Ph. D students to completion and more than 6. Qualifications 1. DSc Published work on High Temperature Superconductors, University of New South Wales. Ph. D High Temperature Chemistry, Dalhousie University, Halifax, Nova Scotia, Canada. Employment History. Distinguished Professor, University of Wollongong (UOW)2. ARC Australian Professorial Fellow, UOW2. ARC Australian Professorial Fellow, UOW1. Director, Professor, Institute for Superconducting & Electronic Materials, UOW1. ARC Professorial Research Fellow, UNSW and Uo. W1. 98. 9- 9. 3 MM Chair of Superconductivity, University of New South Wales. Visiting Professor, UNSW1. View Zhongliang Liang’s professional profile on LinkedIn. Zhuhai Housing, Urban, and Rural Planning Construction Bureau, Dou'men Planning Bureau. July 2015 – August 2015 (2. Hu'nan Provincial Architectural Design. Directed by Lung Chien. With Kang Chin, Yasuaki Kurata, Feng Chi, Fung Chi. Head of Department of Chemistry, Northeastern University, PRCPublication Summary. Book, 1. 0 book chapters, more than 6. Citations > 2. Google Scholars). Web of Science in May 2. US patents, 1 Canadian and 2 Australian patents. Selected Publications. Publications List Y. Dou, Comment on “Cycling Li- O2 batteries via Li. OH formation and decomposition” Science, 3. Piper, “Three- dimensional controlled growth of monodisperse sub- 5. Nature Communications 7, 1. IF=1. 1. 4. 7)R. Liu, “Lyophilized 3. D Lithium Vanadium Phosphate/Reduced Graphene Oxide Electrodes for Super Stable Lithium Ion Batteries” Advanced Energy Materials 6, 1 (2. IF=1. 6. 1. 46)T. Dou, “Ever- Increasing Pseudocapacitance in RGO- Mn. O- RGO Sandwich Nanostructures for Ultrahigh- Rate Lithium Storage” Advanced Functional Materials 2. IF=1. 1. 8. 05)L. Liu, “A Green and Facile Way to Prepare Granadilla- Like Silicon- Based Anode Materials for Li- Ion Batteries” Advanced Functional Materials 2. IF=1. 1. 8. 05) Y. X. Dou, “Uniform yolk- shell Fe. S@C nanospheres for superior sodium/iron sulphide batteries with ultrahigh energy density”, Nature Commun., 6, DOI : 1. IF = 1. 1. 4. 70)I. Y. Baek, “Edge- Fluorinated Graphene Nanoplatelets as High Performance Electrodes for Dye- Sensitized Solar Cells and Lithium Ion. Batteries” Advanced Functional Materials 2. Guang Liang Tong Hua lyrics at LyricZZ.com. Lyric ZZ is proud to present to you very accurate Guang Liang Tong Hua Song lyrics. While Zhuge Liang was alive, Liu Shan treated him as a father figure, allowing Zhuge to handle all state affairs. Zhuge Liang recommended many trusted officials. View Liang Zhu’s professional profile on LinkedIn. LinkedIn is the world's largest business network, helping professionals like Liang Zhu discover inside connections to recommended job candidates, industry experts, and. Blockade of Notch Signaling in Tumor-Bearing Mice May Lead to Tumor Regression, Progression, or Metastasis, Depending on Tumor Cell Types1 Xing-Bin Hu*, Fan Feng*, Learn to play Tong Hua by Guang Liang with guitar chords, lyrics and chord diagrams. Updated: March 27th, 2016. This is Guang Liang's second song. IF = 1. 1. 8. 05)W. J . Li, S. L. Dou, “Multifunctional conducing polymer coated Na. Mn. Fe(CN)(6) cathode for sodium- ion batteries with superior performance via a facile and one- step chemistry approach” Nano Energy 1. IF= 1. 0. 3. 25)X. Wang, “Split- half- tubular polypyrrole@sulfur@polypyrrole composite with a novel three- layer- 3. D structure as cathode for lithium/sulfur batteries” Nano Energy 1. J. Bijarbooneh, A. J Mozer, A. Kim, “Mesoporous anatase single crystals for efficient Co(2+/3+)- based dye- sensitized solar cells” Nano Energy 1. IF = 1. 0. 3. 25) J. Dou, H. S Zhu, “Heterovalent- Doping- Enabled Efficient Dopant Luminescence and Controllable Electronic Impurity Via a New Strategy of Preparing II- VI Nanocrystals” Advanced Materials 2. IF= 1. 7. 7. 93)R. Yamauchi, “Large- scale synthesis of coaxial carbon nanotube/Ni(OH)(2) composites for asymmetric supercapacitor application” Nano Energy 1. IF = 1. 0. 3. 25)D. W Su, S. X Dou, and G. Wang, “Ultrathin Mo. S2 Nanosheets as Anode Materials for Sodium- Ion Batteries with Superior Performance” Advanced Energy Materials 5, 6, 1. IF= 1. 6. 1. 46) D. Wang, “Bismuth: A new anode for the Na- ion battery” Nano Energy 1. IF = 1. 0. 3. 25) D. W. Dou and G. X Wang, “Gold nanocrystals with variable index facets as highly effective cathode catalysts for lithium- oxygen batteries” NPG Asia Materials 7, E1. IF= 1. 0. 1. 18) J. T Xu, M. Jaroniec, S. X Dou and L. M. Dai “High- Performance Sodium Ion Batteries Based on a 3. D Anode from Nitrogen- Doped Graphene Foams” Advanced Materials 2. IF= 1. 7. 7. 93)M. Jiang, “Facile and large- scale fabrication of a cactus- inspired continuous fog collector”, Advanced Functional Materials, 2. Cover (IF=1. 1. 8. Y. Dou, “Tuning the Band Gap in Silicene by Oxidation”, ACS Nano, 8, 1. IF= 1. 2. 0. 33)C. Dou, “Ambient Scalable Synthesis of Surfactant- Free Thermoelectric Cu. Ag. Se Nanoparticles with Reversible Metallic- n- p Conductivity Transition”, Journal of The American Chemical Society, 1. IF= 1. 1. 4. 44)S. Kim, “A case study on fibrous porous Sn. O2 anode for robust, high- capacity lithium- ion batteries”, Nano Energy, 1. IF= 1. 0. 2. 11)G. Dou, “Core- shell structured silicon nanoparticles@Ti. O2- x/carbon mesoporous microfiber composite as a safe and high- performance lithium- ion battery anode”, ACS Nano 8, 2. IF= 1. 2. 0. 33)X. Jiang, “Bio- inspired multifunctional metallic foams through the fusion of different biological solutions. Advanced Functional Materials, 2. Dou, “Sn. 4+x. P3 @ Amorphous Sn- P Composites as Anodes for Sodium- Ion Batteries with Low Cost, High Capacity, Long Life, and Superior Rate Capability”, Advanced Materials, 2. IF= 1. 5. 4. 09)Z. Dou, “Generalized self- assembly of scalable two- dimensional transition metal oxide nanosheets”, Nature Communications, 5, 3. IF= 1. 0. 7. 42)J. Baek, “Edge- Selectively Halogenated Graphene Nanoplatelets (XGn. Ps, X = Cl, Br, or I) Prepared by Ball- Milling and Used as Anode Materials for Lithium- Ion Batteries” Advanced Materials, 2. IF= 1. 5. 4. 09)J. Dai, “Sulfur- Graphene Nanostructured Cathodes via Ball- Milling for High- Performance Lithium. Sulfur Batteries”, ACS Nano, 8, 1. IF= 1. 2. 0. 33)Z. Wang, “Broadband and Omnidirectional, Nearly zero reflective Photovoltaic Glass”, Advanced Materials 2. IF: 1. 3. 8. 77)P. Ramanath, “Al- Doped zinc oxide nanocomposites with enhanced thermoelectric properties”, Nano Letters 1. Dou, “Tailored materials for high- performance Mg. B2 wire”, Advanced Materials 2. Dou, “Rational design of 3. D dendritic Ti. O2 nanostructures with favorable architectures”, Journal of the American Chemistry Society, accepted 2. Dou, “Comparison of GO, GO/MWCNTs composite and MWCNTs as potential electrode materials for supercapacitors”, Energy & Environmental Science 4, 1. Ringer, “Direct observation of local potassium variation and its correlation to electronic inhomogeneity in (Ba. Kx)Fe. 2As. 2 pnictide”, Physical Review Letters 1.
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