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Daoli Zhang

Department of Electronic Science and Technology
Huazhong University of Science and Technology

Publications

1. Daoli Zhang, Jianbing Zhang, Zhe Guo and Xiangshui Miao.Optical and Electrical Properties of Zinc Oxide Thin Films with Low Resistivity via Li-N Dual-Acceptor Doping, Journal of Alloys and Compounds, 509(20): 5962-5968 (2011)
2. Daoli Zhang, Yiping Huang, Jianbing Zhang, Lin Yuan, and Xiangshui Miao. Investigation into Texture, Preferential Orientation, and Optical Properties of Zinc Oxide Nanopolycrystalline Thin Films Deposited by the Sol–Gel Technique on Different Substrates, Journal of Electronic Materials, 40(4): 459-465(2011).
3. Daoli Zhang, Liangyan Chen, Jianbing Zhang, and Xiangshui Miao. Theoretical Investigation of Structural and Magnetic Properties of ZnnSen (n=6-13) Nanoclusters Doped with Manganese Atoms, Journal of the American Ceramic Society, 94(3): 759–764 (2011)
2010
1. Daoli Zhang, Guangmei Zhai, Jianbing Zhang, Lin Yuan and Xiangshui Miao. Growth Orientation and Shape Evolution of Colloidal Lead Selenide Nanocrystals with Different Shapes, CrystEngComm, 12(10): 3243-3248 (2010)
2. Daoli Zhang, Jianbing Zhang, Youguang Cheng, Lin Yuan and Xiangshui Miao. Ultraviolet Emission and Electrical Properties of Aluminum-doped Zinc Oxide (AZO) Thin Films with Preferential c-axis Orientation, Journal of the American Ceramic Society, 93 (10): 3291–3298 (2010)
3. Daoli Zhang, Jianbing Zhang, Qiming Wu and Xiangshui Miao. Microstructure, Morphology and Ultraviolet Emission of Zinc Oxide Nano-polycrystalline Films by Modified Successive Ionic Layer Adsorption and Reaction Method , Journal of the American Ceramic Society, 93 (10): 3284–3290 (2010)
Cited by
1. Ates A, Guzeldir B, Saglam M, ZnS thin film and Zn/ZnS/n-Si/Au-Sb sandwich structure grown with SILAR method and defining the characteristic parameters, MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 14(1): 28-36(2011)
2. Zhang DL, Zhang JB, Guo Z, et al. Optical and electrical properties of zinc oxide thin films with low resistivity via Li-N dual-acceptor doping, JOURNAL OF ALLOYS AND COMPOUNDS, 509(20): 5962-5968(2011)
3. Zhang DL, Huang YP, Zhang JB, et al. Investigation into Texture, Preferential Orientation, and Optical Properties of Zinc Oxide Nanopolycrystalline Thin Films Deposited by the Sol-Gel Technique on Different Substrates, OURNAL OF ELECTRONIC MATERIALS, 40(4): 459-465(2011)
4. Zhang J B and Zhang D L. Photoluminescence and Growth Kinetics of High-Quality indium arsenide and InAs-Based Core/Shell Colloidal Nanocrystals Synthesized Using Arsine (AsH3) Generated via Zinc Arsenide as the Arsenic Source. Chemistry of Materials, 22 (4): 1579–1584(2010) (2009 IF=5.368)
Cited by
Ma Q A, Su X G, Near-infrared quantum dots: synthesis, functionalization and analytical applications, ANALYST, 135(8): 1867-1877(2010)
5. Zhang J B and Zhang D L. Synthesis and growth kinetics of high quality InAs nanocrystals using in situ generated AsH3 as the arsenic source. CrystEngComm, 12(2): 591-594(2010) (2009 IF=4.183)
6 Chen L Y, Zhang D L, Zhai G M, Zhang J B. Comparative study of ZnSe thin films deposited from modified chemical bath solutions with ammonia-containing and ammonia-free precursors, Materials Chemistry and Physics, 120(3-4): 456–460 (2010) (2009 IF=2.015)
Cited by
1. Sadekar HK, Ghule AV, Sharma R, Bandgap engineering by substitution of S by Se in nanostructured ZnS1-xSex thin films grown by soft chemical route for nontoxic optoelectronic device applications, JOURNAL OF ALLOYS AND COMPOUNDS, 509(18): 5525-5531(2011)
2. Metin H, Durmus S, Erat S, et al. Characterization of chemically deposited ZnSe/SnO2/glass films: Influence of annealing in Ar atmosphere on physical properties, APPLIED SURFACE SCIENCE, 257(15): 6474-6480(2011)
3. Huiling Li, Biben Wang, and Lijun Li, Study on Raman spectra of zinc selenide nanopowders synthesized by hydrothermal method, Journal of Alloys and Compounds, 506(1): 327-330(2010)
7. Daoli Zhang, J Zhang, Q Wu, and X Miu. Ultraviolet emission of ZnO nano-polycrystalline films by modified successive ionic layer adsorption and reaction technique, Journal of Sol-Gel Science and Technology, 54(2):165–173(2010) (2009 IF= 1.393)
2009
1. Zhai G M, Zhang D L, Yuan L, Zhang J B. Synthesis and studies of spindle-shaped lead selenide nanocrystals, Proceedings of the 4th IEEE International Conference of Nano/Micro Engineered and Molecular System (NEMS), 363-366(2009). DOI: 10.1109/NEMS.2009.5068596
2008
1. Zhang J B, Zhang D L, Yuan L, et al. The growth kinetics of colloidal InP nanocrystals, Proceedings of the 3RD IEEE International Conference of Nano/Micro Engineered and Molecular System (NEMS), VOLS 1-3: 483-487(2008). DOI: 10.1109/NEMS.2008.4484383
2. Yuan L, Zhang DL, Zhang JB, et al. Shape evolution of star-shaped colloidal PbSe nanocrystals, 2008 3RD IEEE INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEMS, VOLS 1-3: 488-491(2008). DOI: 10.1109/NEMS.2008.4484384
2007
1. Zhang D L, Deng Z B, Chen L Y, et al. Morphologies and microstructures of antimony-doped tin oxide films derived by sol-gel dip-coating processing, High-Performance Ceramics IV, KEY ENGINEERING MATERIALS, 336-338: 750-753(2007)
2. Zhang DL, Deng ZB, Zhang JB, et al. The optical and electrical properties of antimony-doped tin oxide transparent conducting thin films prepared by sol-gel dip-coating technique, High-Performance Ceramics IV, KEY ENGINEERING MATERIALS, 336-338: 754-757(2007)
2006
1. Liangyan Chen, Daoli Zhang, and Qian Chen. The effect on complexing agents on the growth and properties of modified chemical bath deposited ZnS thin films, Proceedings of the 1st IEEE International Conference of Nano/Micro Engineered and Molecular System (NEMS), 599-602(2006). DOI: 10.1109/NEMS.2006.334853
2. Daoli Zhang, Zhibing Deng, Jianbing Zhang, and Liangyan Chen. Microstructure and Electrical Properties of Antimony-doped Tin Oxide Thin Film Deposited by Sol-Gel Process, Materials Chemistry and Physics, 98(2-3): 353–357(2006)
Cited by
1. Babar AR, Shinde SS, Moholkar AV, et al. Structural and optoelectronic properties of antimony incorporated tin oxide thin films, JOURNAL OF ALLOYS AND COMPOUNDS, 505(2): 416-422(2010)
2. Bilgin V, Akyuz I, Ketenci E, et al. Electrical, structural and surface properties of fluorine doped tin oxide films, APPLIED SURFACE SCIENCE, 256(22): 6586-6591(2010)
3. Khun KK, Mahajan A, Bedi RK. Nanostructured Sb doped SnO2 thick films for room temperature NH3 sensing, CHEMICAL PHYSICS LETTERS, 492 (1-3): 119-122(2010)
4. Zhao GH, Li PQ, Nong FQ, et al. Construction and High Performance of a Novel Modified Boron-Doped Diamond Film Electrode Endowed with Superior Electrocatalysis, JOURNAL OF PHYSICAL CHEMISTRY C , 114(13): 5906-5913(2010)
5. Krishnakumar T, Jayaprakash R, Pinna N, et al. Structural, optical and electrical characterization of antimony-substituted tin oxide nanoparticles, JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 70(6): 993-999(2009)
6. Wang YD, Brezesinski T, Antonietti M, et al. Ordered Mesoporous Sb-, Nb-, and Ta-Doped SnO2 Thin Films with Adjustable Doping Levels and High Electrical Conductivitym, ACS NANO , 3(6): 1373-1378(2009)
7. Li PQ, Zhao GH, Cui X, et al. Constructing Stake Structured TiO2-NTs/Sb-Doped SnO2 Electrode Simultaneously with High Electrocatalytic and Photocatalytic Performance for Complete Mineralization of Refractory Aromatic Acid, JOURNAL OF PHYSICAL CHEMISTRY C , 113(6): 2375-2383(2009)
8. Majumder S, Dalui S, Bhar R, et al. Synthesis of Pd/SnO2 films by wet chemical route for LPG sensor, EUROPEAN PHYSICAL JOURNAL-APPLIED PHYSICS , 42(3): 193-202(2008)
9. Yao PD, Chen XM, Wu H, et al. Active Ti/SnO2 anodes for pollutants oxidation prepared using chemical vapor deposition, SURFACE & COATINGS TECHNOLOGY , 202(16): 3850-3855(2008)
10. Hutagalung SD, Lee BY. Surface profile and optical properties of Sb-doped SnO2 thin films, IEEE International Conference of Nano/Micro Engineered and Molecular Systems, JAN 16-19, 2007 Bangkok, THAILAND, 2007 2nd IEEE International Conference on Nano/Micro Engineered and Molecular Systems, Vols 1-3): 1117-1120(2007)
11. Kong JT, Shi SY, Zhu XP, et al. Effect of Sb dopant amount on the structure and electrocatalytic capability of Ti/Sb-SnO2 electrodes in the oxidation of 4-chlorophenol , JOURNAL OF ENVIRONMENTAL SCIENCES-CHINA , 19(11): 1380-1386(2007)
12. Epifani M, Francioso L, Siciliano P, et al. SnO2 thin films from metalorganic precursors: Synthesis, characterization, microelectronic processing and gas-sensing properties , SENSORS AND ACTUATORS B-CHEMICAL , 124(1): 217-226(2007)
13. Zhu BJ, Zhou F, Zhang QH, et al. Solvothermal Sysnthesis of Sb-Doped SnO2 Nanospheres and Their Properties CHINESE JOURNAL OF INORGANIC CHEMISTRY, 27(2): 226-230(2011).
14. Yao PD. Effects of Sb doping level on the properties of Ti/SnO2-Sb electrodes prepared using ultrasonic spray pyrolysis, DESALINATION, 267(2-3): 170-174(2011)
3. Daoli Zhang, Liang Tao, Zhibing Deng, Jianbing Zhang, and Liangyan Chen. Surface Morphologies and Properties of Pure and Antimony-doped Tin Oxide Films Derived by Sol-Gel Dip-coating Processing, Materials Chemistry and Physics, 100(2-3): 275-280(2006)
Cited by
1. Babar AR, Shinde SS, Moholkar AV, et al. Structural and optoelectronic properties of antimony incorporated tin oxide thin films, JOURNAL OF ALLOYS AND COMPOUNDS, 505(2): 416-422(2010)
2. Wei L, Chen Q, Gu YJ. Effects of content of polyaniline doped with dodecylbenzene sulfonic acid on transparent PANI-SiO2 hybrid conducting films , SYNTHETIC METALS , 160(5-6): 405-408(2010)
3. Huang YW, Li GF, Feng JH, et al. Investigation on structural, electrical and optical properties of tungsten-doped tin oxide thin films ,THIN SOLID FILMS , 518(8): 1892-1896(2010)
4. Mohamed HA. Properties of pure and light antimony-doped tin oxide thin films prepared by e-beam technique ,JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS , 11(11): 1794-1799(2009)
5. Fan CM, Hua B, Wang Y, et al. Preparation of Ti/SnO2-Sb2O4 photoanode by electrodeposition and dip coating for PEC oxidations, DESALINATION , 249(2): 736-741(2009)
6. Mohamed HA . Properties of pure and light antimony-doped tin oxide thin films prepared by e-beam technique, OPTOELECTRONICS AND ADVANCED MATERIALS-RAPID COMMUNICATIONS , 3(9): 936-941(2009)
7. Qin GQ, Li DC, Chen ZW, et al. Structural, electronic and optical properties of Sn1-xSbxO2, COMPUTATIONAL MATERIALS SCIENCE , 46(2): 418-424(2009)
8. Qin GQ, Li DC, Feng ZJ, et al. First principles study on the properties of p-type conducting In:SnO2, THIN SOLID FILMS , 517(11): 3345-3349(2009)
9. Huang YW, Zhang Q, Li GF, et al. Tungsten-doped tin oxide thin films prepared by pulsed plasma deposition , MATERIALS CHARACTERIZATION , 60(5): 415-419(2009)
10. Khelladi MF, Izerrouken M, Kermadi S, et al. Characterization of thin layer SnO2/glass by neutrons reflectometry ,1st International Conference on Thin Films and Porous Materials, MAY 19-22, 2008 Algiers, ALGERIA, THIN FILMS AND POROUS MATERIALS 丛书: MATERIALS SCIENCE FORUM , 609): 155-160(2009)
11. Cui X, Zhao GH, Lei YZ, et al. Novel vertically aligned TiO2 nanotubes embedded with Sb-doped SnO2 electrode with high oxygen evolution potential and long service time , MATERIALS CHEMISTRY AND PHYSICS , 113(1): 314-321(2009)
12. Liu TJ, Jin ZG, Feng LR, et al. Conducting antimony-doped tin oxide films derived from stannous oxalate by aqueous sol-gel method , APPLIED SURFACE SCIENCE , 254(20): 6547-6553(2008)
13. Qin SM, Tong ZY, Guo M, et al. The synthesis and property of Nano-SnO2 thin film by sol-gel - art. no. 69841M, 6th International Conference on Thin Film Physics and Applications, SEP 25-28, 2007 Shanghai, PEOPLES R CHINA, THIN FILM PHYSICS AND APPLICATIONS, SIXTH INTERNATIONAL CONFERENCE, in: PROCEEDINGS OF THE SOCIETY OF PHOTO-OPTICAL INSTRUMENTATION ENGINEERS (SPIE) , 6984): M9841-M9841(2008)
14. 1. Zhu BJ, Zhou F, Zhang QH, et al. Solvothermal Sysnthesis of Sb-Doped SnO2 Nanospheres and Their Properties, CHINESE JOURNAL OF INORGANIC CHEMISTRY, 27(2): 226-230 (2011)
2005
1. Zhao L, Zhang DL, Du G, et al. The properties of antimony-doped tin oxide thin films by the sol-gel approach, HIGH-PERFORMANCE CERAMICS III, KEY ENGINEERING MATERIALS, 280-283: 831-834(2005)
2. Du G, Zhang DL, Zhao L, et al. On the microstructure and electrical properties of undoped and antimony-doped tin oxide thin film deposited by sol-gel process, HIGH-PERFORMANCE CERAMICS III, KEY ENGINEERING MATERIALS, 280-283: 835-838(2005)
2004
1. Daoli Zhang, D Zhou, S Gong, et al. Influences of porosities on the electrical properties of BaTiO3 PTCR thermistors coated with electroless Ni electrodes, Sensors and Actuators A-Physical, 112(2004):94-100 (SCI, EI收录)(2009 IF= 1.674).
Cited by
1. Jia JL, Zhu L, Zhou WY, et al. Preparation and characterisation of BaTiO3 based PTC ceramics with high performance, ADVANCES IN APPLIED CERAMICS, 108(2): 132-135(2009)
2. Moetakef, P., Nemati, Z.A. Electrothermal simulation of barium titanate based PTCR thermistor, Materials Science and Engineering B: Solid-State Materials for Advanced Technology 133 (1-3), pp. 157-166(2006)
2003
1. Daoli Zhang,G Weng, D Zhou, et al. The kinetics of initial stage in sintering process of BaTiO3-based PTCR ceramics and its computer simulation, Materials Science and Engineering B-Solid State Materials for Advanced Technology, 99(2003): 88-92(SCI, EI收录) (2009 IF= 1.715).
Cited by
1. Wang XH, Liu XL, Yan T, et al. Sintering behavior of pure and Nb-doped BaTiO3 powder prepared by high-gravity reactive precipitation, High-Performance Ceramics IV, KEY ENGINEERING MATERIALS, 336-338: 2293-2295(2007)
2. Wang, X.H., Liu, X.L., Chen, J.F. Sintering behavior and mechanism of pure BaTiO3 ceramic prepared by high-gravity reactive precipitation, Advanced Materials Research 11-12, pp. 27-30(2006)
3. Qiu, F., Egerton, T.A., Cooper, I.L. An extended two-state model for grain growth during gas phase production of powders, Journal of the European Ceramic Society 26 (1-2), pp. 37-47(2006)
2. Daoli Zhang, G Weng, D Zhou, et al. Computer simulation of grain growth of intermediate- and final-stage sintering and Ostwald ripening of BaTiO3-based PTCR ceramics, Materials Science and Engineering B-Solid State Materials for Advanced Technology, 99(2003):428-432(SCI, EI收录).
1. German R, Suri P, Park S, Review: liquid phase sintering, JOURNAL OF MATERIALS SCIENCE, 44(1): 1-39( 2009)
2002
1. Daoli Zhang, D Zhou, S Gong, et al. The ac electrical failure behaviors and mechanisms of PTCR ceramics coated with electroless Ni electrodes, Sensors and Actuators A-Physical, 101(2002):123-131(SCI, EI收录).
Cited by
1. Moetakef, P., Nemati, Z.A. Electrothermal simulation of barium titanate based PTCR thermistor, Materials Science and Engineering B: Solid-State Materials for Advanced Technology 133 (1-3), pp. 157-166(2006)
2001
1. Daoli Zhang, D Zhou, S Gong, et al. Influences of electroless Ni electrodes on electrical characteristics of PTCR thermistors, Journal of the European Ceramic Society, 21(2001): 1101-1105(SCI收录)(2009 IF= 2.090)
Cited by
1. Mu SL, Li N, Li DY, et al. Investigation of a transparent chromate (III) passive film on electroless Ni-P coating by XPS and electrochemical methods, ELECTROCHIMICA ACTA, 54(26): 6718-6724(2009)
2. Lu, S.G., Li, K., Chan, H.L.W., Choy, C.L. Dielectric properties of titanate based ceramic capacitors using electroless Ni as contact electrodes, Materials Chemistry and Physics 88 (1), pp. 113-118(2004)
3. Mu, H., Seok, J., Lin, R.Y. Nickel thin film coatings on steels with electroless plating and sputter deposition, Journal of the Electrochemical Society 150 (2), pp. C67-C72(2003)
Member
Grade: Member

Member since May 26, 2011
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