1. Dou, X. C., Li, L., Huang, X. H., and Li, G. H., “Growth Mechanisms of Electrodeposited Nanowires”, in “Crystal Growth: Theory, Mechanisms and Morphology” edited by Editors: Nicole A. Mancuso and James P. Isaac, 2011 (Invited book chapter by Nova Publishers)
代表性論文:
1) Linjuan Guo, Zheng Yang, and Xincun Dou*, Artificial Olfactory System for Trace Identification of Explosive Vapors Realized by Optoelectronic Schottky Sensing, Advanced Materials, 2017, 29,
1604528 (IF=18.96)
2) Zheng Yang, and Xincun Dou*, Emerging and Future Possible Strategies for Enhancing 1D Inorganic Nanomaterials-based Electrical Sensors towards Explosives Vapors Detection, Advanced Functional Materials 2016, 26,2406–2425. (IF=11.4)
3) Zhaofeng Wu, ChaoyuZhou, Baiyi Zu, Yushu Li, and Xincun Dou*, Contactless and Rapid Discrimination of Improvised Explosives Realized by Mn2+ Doping Tailored ZnS Nanocrystals, Advanced Functional Materials, 2016, 26, 4578–4586. (IF=11.4)
5) Yuxiang Li, Baiyi Zu*,Yanan Guo, Kun Li, Haibo Zeng* and Xincun Dou*, Surface Superoxide Complex Defects-Boosted Ultra-sensitive ppb-level NO2 Gas Sensors, Small, 2016, 12, 1420–1424. (IF=8.4)
6) Jiang Qu, Yuru Ge, Baiyi Zu*, Yuxiang Li, and Xincun Dou*, Transition-Metal-Doped p-type ZnO Nanoparticle-based Sensory for Instant Discrimination of Explosives Vapors, Small, 2016, 12, 1369–1377. (IF=8.4)
7) Chaoyu Zhou, Zhaofeng Wu, Yanan Guo, Yushu Li, Hongyu Cao, Xuefang Zheng* and Xincun Dou*, Ultrasensitive, Real-time and Discriminative Detectionof Improvised Explosives by Chemiresistive Thin-film Sensory of Mn2+ Tailored Hierarchical ZnS, Scientific Reports, 2016, 6, 25588. (IF=5.228)
8) Yang, Z., Guo, L., Zu, B., Guo, Y., Xu, T., and Dou, X. C.*, CdS/ZnO Core/Shell Nanowire-Built Films for Enhanced Photodetecting and Optoelectronic Gas-Sensing Applications. Advanced Optical Materials 2014, 2, 738-745. (IF=5.2)
9) Guo, L. J., Zu, B. Y., Yang, Z., Cao, H. Y., Zheng X. F., and Dou, X. C.*, APTS and rGO Co-Functionalized Pyrenated Fluorescent Nanonets for Highly Sensitive Sensing of TNT Vapor. Nanoscale, 2014, 6, 1467-1473. (IF=7.8)
10) Zu, B. Y., Guo, Y. N., and Dou, X. C.*, Nanostructure-Based Optoelectronic Sensing of Vapor Phase Explosives - A Promising but Challenging Method, Nanoscale, 2013, 5, 10693-10701. (IF=7.8)
11) Dou, X. C.*; Sabba, D.; Mathews,N.; Wong, L. H.; Lam, Y. M.; Mhaisalkar, S. Hydrothermal Synthesis of High Electron Mobility Zn-doped SnO2 Nanoflowers as Photoanode Material for Efficient Dye Sensitized Solar Cells. Chem. Mater. 2011,23, 3938-3945. (IF=9.4)
12) Dou, X. C.*; Mathews, N.; Wang,Q.; Pramana, S. S.; Lam, Y. M.; Mhaisalkar, S. Novel Zn-Sn-O nanocactus with excellent transport properties as photoanode material for high performancedye-sensitized solar cells. Nanoscale 2011,3, 4640-4646. (IF=7.8)
13) Dou, X. C.; Li, G. H.; Lei, H. C.Kinetic versus thermodynamic control over growth process of electrodeposited Bi/BiSb superlattice nanowires. Nano Lett. 2008,8, 1286-1290. (IF=13.8)