Microstructural evolution and photoluminescence performanance of nickel and chromium doped ZnO nanostructures
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[1] D. Late,et al. Synthesis of Ni-doped ZnO nanostructures by low-temperature wet chemical method and their enhanced field emission properties , 2016, 1708.09572.
[2] M. Amlouk,et al. Structural, morphological, optical and opto-thermal properties of Ni-doped ZnO thin films using spray pyrolysis chemical technique , 2016, Bulletin of Materials Science.
[3] A. Meng,et al. Cr-Doped ZnO Nanoparticles: Synthesis, Characterization, Adsorption Property, and Recyclability. , 2015, ACS applied materials & interfaces.
[4] I. S. Hudiara,et al. Effect of Ni Doping on Structural, Optical, and Magnetic Properties of Fe-Doped ZnO Nanoparticles , 2015 .
[5] Caroline Sunyong Lee,et al. Formation of polar surfaces in microstructured ZnO by doping with Cu and applications in photocatalysis using visible light , 2015 .
[6] Yu-Cheng Chang. Ni-doped ZnO nanotower arrays with enhanced optical and field emission properties , 2014 .
[7] A. Srivastava,et al. Growth of thermally evaporated SnO2 nanostructures for optical and humidity sensing application , 2014 .
[8] Caroline Sunyong Lee,et al. Defect-controlled growth of ZnO nanostructures using its different zinc precursors and their application for effective photodegradation , 2014 .
[9] S. R. Silva,et al. From 1D and 2D ZnO nanostructures to 3D hierarchical structures with enhanced gas sensing properties. , 2014, Nanoscale.
[10] R. C. Pawar,et al. Single-step sensitization of reduced graphene oxide sheets and CdS nanoparticles on ZnO nanorods as visible-light photocatalysts , 2014 .
[11] J. Tawale,et al. High yield synthesis and characterization of aqueous stable zinc oxide nanocrystals using various precursors , 2013 .
[12] F. Yakuphanoglu,et al. Synthesis, diffused reflectance and electrical properties of nanocrystalline Fe-doped ZnO via sol-gel calcination technique , 2013 .
[13] A. Srivastava,et al. Influence of silver and graphite on zinc oxide nanostructures for optical application , 2013 .
[14] F. Liu,et al. C2H2 gas sensor based on Ni-doped ZnO electrospun nanofibers , 2013 .
[15] Ning Han,et al. Highly formaldehyde-sensitive, transition-metal doped ZnO nanorods prepared by plasma-enhanced chemical vapor deposition , 2012 .
[16] T. Pandiyarajan,et al. Cr doping induced structural, phonon and excitonic properties of ZnO nanoparticles , 2012, Journal of Nanoparticle Research.
[17] Yuming Cui,et al. Micro-lotus constructed by Fe-doped ZnO hierarchically porous nanosheets: Preparation, characterization and gas sensing property , 2011 .
[18] R. Elilarassi,et al. Synthesis, structural and optical characterization of Ni-doped ZnO nanoparticles , 2011 .
[19] K. N. Sood,et al. Synthesis and characterization of ZnO tetrapods for optical and antibacterial applications , 2010 .
[20] A. Facchetti,et al. Role of Gallium Doping in Dramatically Lowering Amorphous‐Oxide Processing Temperatures for Solution‐Derived Indium Zinc Oxide Thin‐Film Transistors , 2010, Advances in Materials.
[21] Xiaoyang Liu,et al. Effects of Cr-doping on the optical and magnetic properties in ZnO nanoparticles prepared by sol-gel method , 2009 .
[22] Prashant K. Sharma,et al. Effect of nickel doping concentration on structural and magnetic properties of ultrafine diluted magnetic semiconductor ZnO nanoparticles , 2009 .
[23] A. Waag,et al. Zinc oxide nanorod based photonic devices: recent progress in growth, light emitting diodes and lasers , 2009, Nanotechnology.
[24] T. Valdés-Solís,et al. Shape and size effects of ZnO nanocrystals on photocatalytic activity. , 2009, Journal of the American Chemical Society.
[25] X. M. Chen,et al. Effect of defects on room-temperature ferromagnetism of Cr-doped ZnO films , 2009 .
[26] Monica Lira-Cantu,et al. Vertically-aligned nanostructures of ZnO for excitonic solar cells: a review , 2009 .
[27] V. Dravid,et al. Self-Aggregation and Assembly of Size-Tunable Transition Metal Doped ZnO Nanocrystals , 2008 .
[28] Seong-Ju Park,et al. Tunable electronic transport characteristics of surface-architecture-controlled ZnO nanowire field effect transistors. , 2008, Nano letters.
[29] A. Djurišić,et al. Transition metal-doped ZnO nanorods synthesized by chemical methods , 2008 .
[30] Zhong Lin Wang,et al. In Situ Field Emission of Density‐Controlled ZnO Nanowire Arrays , 2007 .
[31] S. O’Brien,et al. Origin of defect-related green emission from ZnO nanoparticles: effect of surface modification , 2007, Nanoscale Research Letters.
[32] Cesare Soci,et al. Rational synthesis of p-type zinc oxide nanowire arrays using simple chemical vapor deposition. , 2007, Nano letters.
[33] Yu Hang Leung,et al. Optical properties of ZnO nanostructures. , 2006, Small.
[34] J. Qian,et al. SYNTHESIS AND SURFACE MODIFICATION OF ZNO NANOPARTICLES , 2006 .
[35] A. Balandin,et al. Photoluminescence investigation of the carrier recombination processes in ZnO quantum dots and nanocrystals , 2006 .
[36] Titas Dutta,et al. On the sol–gel synthesis and thermal, structural, and magnetic studies of transition metal (Ni, Co, Mn) containing ZnO powders , 2006 .
[37] Peidong Yang,et al. Transition-metal doped zinc oxide nanowires. , 2006, Angewandte Chemie.
[38] Zhong Lin Wang,et al. Large-scale Ni-doped ZnO nanowire arrays and electrical and optical properties. , 2005, Journal of the American Chemical Society.
[39] Kijung Yong,et al. Controlled growth of well-aligned ZnO nanorod array using a novel solution method. , 2005, The journal of physical chemistry. B.
[40] N. Spaldin,et al. Transition metal-doped TiO2 and ZnO—present status of the field , 2005 .
[41] Won-Jae Lee,et al. Aging effect and origin of deep-level emission in ZnO thin film deposited by pulsed laser deposition , 2005 .
[42] Desheng Jiang,et al. Zinc oxide nanorod and nanowire for humidity sensor , 2005 .
[43] Jeunghee Park,et al. Comparative structure and optical properties of Ga-, In-, and Sn-doped ZnO nanowires synthesized via thermal evaporation. , 2005, The journal of physical chemistry. B.
[44] Lisheng Wang,et al. Synthesis of well-aligned ZnO nanowires by simple physical vapor deposition on c-oriented ZnO thin films without catalysts or additives , 2005 .
[45] Gaoshan Huang,et al. In situ synthesis of Mn-doped ZnO multileg nanostructures and Mn-related Raman vibration , 2005 .
[46] David P. Norton,et al. ZnO nanowire growth and devices , 2004 .
[47] Z. Fang,et al. Blue luminescent center in ZnO films deposited on silicon substrates , 2004 .
[48] Q. Wan,et al. Stable field emission from tetrapod-like ZnO nanostructures , 2004 .
[49] X. Zhang,et al. Photoluminescent properties of copper-doped zinc oxide nanowires , 2004 .
[50] Zhong Lin Wang. Zinc oxide nanostructures: growth, properties and applications , 2004 .
[51] Yuan Yao,et al. Well‐Aligned ZnO Nanowire Arrays Fabricated on Silicon Substrates , 2004 .
[52] Zhong Lin Wang. Nanostructures of zinc oxide , 2004 .
[53] B. Satpati,et al. Understanding the quantum size effects in ZnO nanocrystals , 2004 .
[54] Zhong Lin Wang,et al. Large-Scale Hexagonal-Patterned Growth of Aligned ZnO Nanorods for Nano-optoelectronics and Nanosensor Arrays. , 2004, Nano letters.
[55] Huifang Xu,et al. Complex and oriented ZnO nanostructures , 2003, Nature materials.
[56] Q. Wan,et al. Low-field electron emission from tetrapod-like ZnO nanostructures synthesized by rapid evaporation , 2003 .
[57] Zhong Lin Wang,et al. Bicrystalline zinc oxide nanowires , 2003 .
[58] Bin Liu,et al. Hydrothermal synthesis of ZnO nanorods in the diameter regime of 50 nm. , 2003, Journal of the American Chemical Society.
[59] Yuhua Shen,et al. Structural and optical properties of nanophase zinc oxide , 2003 .
[60] Gyu-Chul Yi,et al. Metalorganic vapor-phase epitaxial growth of vertically well-aligned ZnO nanorods , 2002 .