研究成果

研究成果  

 

论文

(37)Ding, H.; Wei, J. S.;Xiong, H. M.*
Nitrogen and sulfur co-doped carbon dots with strong blue luminescence
Nanoscale, 2014, 6, 13817.

(36)Wang, Y. L.; Liu, M. B.; Xie, L. Q.; Fang, C. Y.;Xiong, H. M.*; Lu, H. J.*
Highly Efficient Enrichment Method for Glycopeptide Analyses: Using Specific and Nonspecific Nanoparticles Synergistically
Anal. Chem.2014, 86, 2057.

(35)Zhang, P.; Wang, T. Y.;Xiong, H. M.*; Kong, J. L.*
In situ tracking the intracellular delivery of antisense oligonucleotides by fluorescein doped silica nanoparticles
Talanta2014, 127, 43.

(34)Wang, X.; Li, B. L.; Liu, D. P.*;Xiong, H. M.*
ZnWO4 nanocrystals/reduced graphene oxide hybrids: Synthesis and their application for Li ion batteries
Sci. China Chem.2014, 57, 122.

(33)Ding, H.; Zhang, P.; Wang, T. Y.; Kong, J. L.*;Xiong, H. M.*
Nitrogen-doped carbon dots derived from polyvinyl pyrrolidone and their multicolor cell imaging
Nanotechnology2014, 25, 205604.

(32) Xiong, H. M.*
ZnO Nanoparticles Applied to Bioimaging and Drug Delivery
Adv. Mater.2013, 25, 5329.(Research News)

(31)Xu, Y. D.; Zhang, Z. Y.; Kong, J. L.; Li, G. D.;Xiong, H. M.*
Photoluminescent ZnO Quantum Dots Coated by Polymethacrylamide and Their Application in Cell Imaging
Chem. J. Chinese U.2013, 34, 1565.

(30)Ding, H.; Cheng, L. W.; Ma, Y. Y.; Kong, J. L.*;Xiong, H. M.*
Luminescent carbon quantum dots and their application in cell imaging
New J. Chem.2013, 37, 2515.

(29)Zhang, H. J.;Xiong, H. M.*
Biological Applications of ZnO Nanoparticles
Current Molecular Imaging2013, 2, 177.(Review)

(28)Zhang, Z. Y.; Xu, Y. D; Ma, Y. Y.; Qiu, L. L.; Wang, Y.; Kong, J. L.*;Xiong, H. M.*
Biodegradable ZnO@polymer Core–Shell Nanocarriers: pH-Triggered Release of Doxorubicin In Vitro
Angew. Chem. Int. Ed2013, 52, 4127.

(27)Zhou, J. F.; Ao, J.; Xia, Y. Y.;Xiong, H. M.*
Stable Photoluminescent ZnO@Cd(OH)2 Core-Shell Nanoparticles Synthesized via Ultrasonication-Assisted Sol-Gel Method
J. Colloid Interf. Sci.2013, 393, 80.

(26)Yang, H. Y.; Zhao, Y. W.; Zhang, Z. Y.; Zhou, J. F.;Xiong, H. M.*; Yu, S. N.*

One-pot synthesis of water-dispersible Ag2S quantum dots with bright fluorescent emission in the second near-infrared window
Nanotechnology2013, 24, 055706.

(25)Yang, H. Y.;Xiong, H. M.*; Yu, S. N.*
Quantum Dots-based Drug Delivery System
Prog. Chem.2012, 24, 2234.

(24)Zhang, H. J.;Xiong, H. M.*; Ren, Q. G.*; Xia, Y. Y.; Kong, J. L.
ZnO@silica core–shell nanoparticles with remarkable luminescence and stability in cell imaging
J. Mater. Chem.2012, 22, 13159.

(23)Pan, Z. Y.; Liang, J.; Zheng, Z. Z.*; Wang, H. H.;Xiong, H. M.*
The application of ZnO luminescent nanoparticles in labeling mice
Contrast Media Mol. Imaging2011, 6, 328.

(22)Xiong, H. M.; Shen, W. Z.; Guo, B. K.; Bo, S. H.; Cui, W. J.; Chen, L. Q.; Li, H.*; Xia, Y. Y.*
Anomalous lithium storage in a novel nanonet composed by SnO2 nanoparticles and poly(ethylene glycol) chains
J. Mater. Chem.2011, 21, 2845.

(21)Xiong, H. M.*; Ma, R. Z.; Wang, S. F.; Xia, Y. Y.
Photoluminescent ZnO nanoparticles synthesized at the interface between air and triethylene glycol
J. Mater. Chem.2011, 21, 3178.

(20)Shen, W. W.; Shen, C. P.;Xiong, H. M.; Lu, H. J.*; Yang, P. Y.
A robust new strategy for high-molecular-weight proteome research: A 2-hydroxyethyl agarose/polyacrylamide gel enhanced separation and ZnO-PMMA nanobeads assisted identification
Talanta2010, 82, 1594.

(19)Shen, W. W.; Ma, C. N.; Wang, S. F.;Xiong, H. M.*; Lu, H. J.*; Yang, P. Y.
SnO2@Poly(HEMA-co-St-co-VPBA) Core-shell Nanoparticles Designed for Selectively Enriching Glycopeptides Followed by MALDI-MS Analysis
Chem. -Asian J.2010, 5, 1185.

(18)Xiong, H. M.*
Photoluminescent ZnO nanoparticles modified by polymers
J. Mater. Chem.2010, 20, 4251.(Feature Article)
Top 10 Most Accessed Articles

(17)Xiong, H. M.*; Shchukin, D. G.; Mohwald, H.; Xu, Y.; Xia, Y. Y.
Sonochemical Synthesis of Highly Luminescent Zinc Oxide Nanoparticles Doped with Magnesium(II)
Angew. Chem. Int. Ed.2009, 48, 2727.

(16)Xiong, H. M.*; Xu, Y.; Ren, Q. G.; Xia, Y. Y.*
Stable aqueous ZnO@polymer core-shell nanoparticles with tunable photoluminescence and their application in cell Imaging
J. Am. Chem. Soc.2008, 130, 7522.

(15)Xiong, H. M.; Guan, X. Y.; Jin, L. H.; Shen, W. W.; Lu, H. J.*; Xia, Y. Y.*
Surfactant-free synthesis of SnO2@PMMA and TiO2@PMMA core-shell nanobeads designed for peptide/protein enrichment and MALDI-TOF MS analysis
Angew. Chem. Int. Ed.2008, 47, 4204.(Hot Paper)

(14)Luo, J. Y.;Xiong, H. M.; Xia, Y. Y*
LiMn2O4 nanorods, nanothorn microspheres, and hollow nanospheres as enhanced cathode materials of lithium ion battery
J. Phys. Chem. C2008, 112, 12051.

(13)Shen, W. W.;Xiong, H. M.; Xu, Y.; Cai, S. J.; Lu, H. J.*; Yang, P. Y.
ZnO-poly(methyl methacrylate) nanobeads for enriching and desalting low-abundant proteins followed by directly MALDI-TOF MS analysis
Anal. Chem.2008, 80, 6758.

(12)Yang, X. H.; Wang, Y. G.;Xiong, H. M.; Xia, Y. Y.*
Interfacial synthesis of porous MnO2 and its application in electrochemical capacitor
Electrochimica Acta2007, 53, 752.

(11)Luo, J. Y.; Wang, Y. G.;Xiong, H. M.; Xia, Y. Y.*
Ordered mesoporous spinel LiMn2O4 by a soft-chemical process as a cathode material for lithium-ion batteries
Chem. Mater.2007, 19, 4791.

(10)Wang, Y. G.; Chen, L.; Li, F.;Xiong, H. M.; Xia, Y. Y.*
The high electrocatalytic activity of Mn3O4/mesoporous carbon composite for oxygen reduction in alkaline solutions
Chem. Mater.2007, 19, 2095.

(9)Cheng, L.; Li, X. L.; Liu, H. J.;Xiong, H. M.; Zhang, P. W.; Xia, Y. Y.*
Carbon-coated Li4Ti5O12 as a high rate electrode material for Li-ion intercalation
J. Electrochem. Soc.2007, 154, A692.

(8)Xiong, H. M.; Xie, D. P.; Guan, X. Y.; Tan, Y. J.; Xia, Y. Y.*
Water-Stable Blue-Emitting ZnO@Polymer Core-Shell Microspheres
J. Mater. Chem.2007, 17, 2490.(Cover)

(7)Zhang, X.; Yang, H.;Xiong, H. M.; Li, F. Y.; Xia, Y. Y.*
A quasi-solid-state dye-sensitized solar cell based on the stable polymer-grafted nanoparticle composite electrolyte
J. Power Sources2006, 160, 1451.

(6)Cheng, L.; Liu, H. J.; Zhang, J. J.;Xiong, H. M.; Xia, Y. Y.*
Nanosized Li4Ti5O12 prepared by molten salt method as an electrode material for hybrid electrochemical supercapacitors
J. Electrochem. Soc.2006, 153, A1472.

(5)Xiong, H. M.; Shen, W. Z.; Wang, Z. D.; Zhang, X.; Xia, Y. Y.*
Liquid polymer nanocomposites PEGME-SnO2 and PEGME-TiO2 prepared through solvothermal methods
Chem. Mater.2006, 18, 3850.

(4)Xiong, H. M.; Wang, Z. D.; Xia, Y. Y.*
Polymerization initiated by inherent free radicals on nanoparticle surfaces: A simple method of obtaining ultrastable (ZnO)polymer core-shell nanoparticles with strong blue fluorescence
Adv. Mater.2006, 18, 748.

(3)Xiong, H. M.; Wang, Z. D.; Xie, D. P.; Cheng, L.; Xia, Y. Y.*
Stable polymer electrolytes based on polyether-grafted ZnO nanoparticles for all-solid-state lithium batteries
J. Mater. Chem.2006, 16, 1345.

(2)Xiong, H. M.; Liu, D. P.; Xia, Y. Y.; Chen, J. S.*
Polyether-grafted ZnO nanoparticles with tunable and stable photoluminescence at room temperature
Chem. Mater.2005, 17, 3062.

(1)Xiong, H. M.; Wang, Z. D.; Liu, D. P.; Chen, J. S.; Wang, Y. G.; Xia, Y. Y.*
Bonding polyether onto ZnO nanoparticles: An effective method for preparing polymer nanocomposites with tunable luminescence and stable conductivity
Adv. Funct. Mater.2005, 15, 1751.

专利

(1) 张华娟,熊焕明,任庆广
中国发明专利201210199662.7
一种核壳型氧化锌-二氧化硅纳米粒子及其制备方法和应用
申请日期:2012年6月18日

(2) 熊焕明, 马日照
中国发明专利201110142078.3
在聚乙二醇中合成的ZnO发光纳米粒子及其制备方法
申请日期:2011年5月30日

(3) 熊焕明
中国发明专利200910052488.1
一种Mg掺杂的氧化锌发光纳米粒子及其制备方法
申请日期:2009年6月4日

(4) 熊焕明, 任庆广
中国发明专利200810034036.6
一种氧化锌-聚合物核壳型发光纳米粒子及其制备方法
申请日期:2008年2月28日

(5) 熊焕明,陆豪杰
中国发明专利200810033319.9
一种甲基丙烯酸甲酯复合微球及其制备方法和应用
授权日期:2011年4月6日

(6) 熊焕明,夏永姚
中国发明专利200510110459.8
一种氧化锌-聚合物核壳型发光纳米粒子及其制备方法
授权日期:2009年2月18日