Quantum dot-based near-infrared electrochemiluminescent immunosensor with gold nanoparticle-graphene nanosheet hybrids and silica nanospheres double-assisted signal amplification.
暂无分享,去创建一个
Na Li | Jing Wang | Heyou Han | Liang Huang | Heyou Han | Jing Wang | Xiaochun Jiang | Xiaochun Jiang | Liang Huang | Lina Chen | Lina Chen | Na Li
[1] H. Qi,et al. Homogenous electrogenerated chemiluminescence immunoassay for human immunoglobulin G using N-(aminobutyl)-N-ethylisoluminol as luminescence label at gold nanoparticles modified paraffin-impregnated graphite electrode. , 2008, Talanta.
[2] Andre K. Geim,et al. The rise of graphene. , 2007, Nature materials.
[3] S. Stankovich,et al. Graphene-based composite materials , 2006, Nature.
[4] A. Bard,et al. Electrogenerated Chemiluminescence of CdSe Nanocrystals , 2002 .
[5] Chunyan Zhang,et al. Versatile immunosensor using a quantum dot coated silica nanosphere as a label for signal amplification. , 2010, Analytical chemistry.
[6] Jun-Jie Zhu,et al. Direct electrochemistry and electrocatalysis of hemoglobin based on poly(diallyldimethylammonium chloride) functionalized graphene sheets/room temperature ionic liquid composite film , 2010 .
[7] G. Frens. Controlled Nucleation for the Regulation of the Particle Size in Monodisperse Gold Suspensions , 1973 .
[8] Ying Li,et al. CdTe quantum dot functionalized silica nanosphere labels for ultrasensitive detection of biomarker. , 2009, Chemical communications.
[9] H. Ju,et al. Quantum‐Dot‐Functionalized Poly(styrene‐co‐acrylic acid) Microbeads: Step‐Wise Self‐Assembly, Characterization, and Applications for Sub‐femtomolar Electrochemical Detection of DNA Hybridization , 2010 .
[10] Q. Ma,et al. Near-infrared quantum dots: synthesis, functionalization and analytical applications. , 2010, The Analyst.
[11] Heyou Han,et al. Electrogenerated chemiluminescence from thiol-capped CdTe quantum dots and its sensing application in aqueous solution. , 2007, Analytica chimica acta.
[12] Yafeng Wu,et al. Polymer-functionalized silica nanosphere labels for ultrasensitive detection of tumor necrosis factor-alpha. , 2011, Analytical chemistry.
[13] Xiaoli Zhang,et al. Strong anodic near-infrared electrochemiluminescence from CdTe quantum dots at low oxidation potentials. , 2011, Chemical communications.
[14] Hui Jiang,et al. Enzyme-quantum dots architecture for highly sensitive electrochemiluminescence biosensing of oxidase substrates. , 2007, Chemical communications.
[15] P. J. Ollivier,et al. Layer-by-Layer Assembly of Ultrathin Composite Films from Micron-Sized Graphite Oxide Sheets and Polycations , 1999 .
[16] Jian-Rong Zhang,et al. Near infrared sensing based on fluorescence resonance energy transfer between Mn:CdTe quantum dots and Au nanorods. , 2009, Biosensors & bioelectronics.
[17] A. Boisen,et al. Adsorption and interfacial electron transfer of Saccharomyces cerevisiae yeast cytochrome c monolayers on Au(111) electrodes , 2003 .
[18] Hongyuan Chen,et al. CdS nanocrystal-based electrochemiluminescence biosensor for the detection of low-density lipoprotein by increasing sensitivity with gold nanoparticle amplification. , 2007, Analytical chemistry.
[19] Dayong Tian,et al. Ultrasensitive electrochemiluminescence immunosensor based on luminol functionalized gold nanoparticle labeling. , 2010, Biosensors & bioelectronics.
[20] J. B. Pitner,et al. Synthesis and biosensor performance of a near-IR thiol-reactive fluorophore based on benzothiazolium squaraine. , 2007, Bioconjugate chemistry.
[21] T. Mihaljevic,et al. Near-infrared fluorescent type II quantum dots for sentinel lymph node mapping , 2004, Nature Biotechnology.
[22] F. Wise,et al. Electrogenerated chemiluminescence from PbS quantum dots. , 2009, Nano letters.
[23] Tingting Xu,et al. Water-dispersed near-infrared-emitting quantum dots of ultrasmall sizes for in vitro and in vivo imaging. , 2011, Angewandte Chemie.
[24] Yueming Li,et al. P25-graphene composite as a high performance photocatalyst. , 2010, ACS nano.
[25] Jun‐Jie Zhu,et al. Graphene-assisted dual amplification strategy for the fabrication of sensitive amperometric immunosensor. , 2011, Biosensors & bioelectronics.
[26] Xiaoli Zhang,et al. Efficient near-infrared electrochemiluminescence from CdTe nanocrystals with low triggering potential and ultrasensitive sensing ability. , 2011, Chemistry.
[27] Guonan Chen,et al. Hot electron induced cathodic electrochemiluminescence at AuSb alloy electrode for fabricating immunosensor with self-assembled monolayers. , 2010, Talanta.
[28] Hongyuan Chen,et al. Enhanced solid-state electrochemiluminescence of CdS nanocrystals composited with carbon nanotubes in H2O2 solution. , 2006, Chemical communications.
[29] Xin Wang,et al. Graphene−Metal Particle Nanocomposites , 2008 .
[30] Hua Bai,et al. Preparation of Gold Nanoparticle/Graphene Composites with Controlled Weight Contents and Their Application in Biosensors , 2010 .
[31] A. Bard,et al. Electrochemistry and electrogenerated chemiluminescence of CdTe nanoparticles , 2004 .
[32] Heyou Han,et al. Cathodic electrochemiluminescence from self-designed near-infrared-emitting CdTe/CdS/ZnS quantum dots on bare Au electrode , 2011 .
[33] Jun‐Jie Zhu,et al. Fabrication of near-infrared-emitting CdSeTe/ZnS core/shell quantum dots and their electrogenerated chemiluminescence. , 2010, Chemical communications.
[34] Na Li,et al. Sandwich-type electrochemiluminescence immunosensor based on N-(aminobutyl)-N-ethylisoluminol labeling and gold nanoparticle amplification. , 2009, Talanta.
[35] Erkang Wang,et al. Self-assembly of cationic polyelectrolyte-functionalized graphene nanosheets and gold nanoparticles: a two-dimensional heterostructure for hydrogen peroxide sensing. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[36] Zhengbo Chen,et al. Electrochemical sensing of L-histidine based on structure-switching DNAzymes and gold nanoparticle-graphene nanosheet composites. , 2011, Chemical communications.
[37] Edward Sacher,et al. Spectroscopic evidence for π-π interaction between poly(diallyl dimethylammonium) chloride and multiwalled carbon nanotubes , 2005 .
[38] Jinbin Liu,et al. Toward a universal "adhesive nanosheet" for the assembly of multiple nanoparticles based on a protein-induced reduction/decoration of graphene oxide. , 2010, Journal of the American Chemical Society.
[39] Lindsay E. Pell,et al. Electrochemistry and Electrogenerated Chemiluminescence from Silicon Nanocrystal Quantum Dots , 2002, Science.
[40] A. Bard,et al. Effect of Surface Passivation on the Electrogenerated Chemiluminescence of CdSe/ZnSe Nanocrystals , 2003 .
[41] Hao Yan,et al. Aqueous synthesis of zinc blende CdTe/CdS magic-core/thick-shell tetrahedral-shaped nanocrystals with emission tunable to near-infrared. , 2010, Journal of the American Chemical Society.
[42] Huafeng Yang,et al. Water-soluble graphene covalently functionalized by biocompatible poly-L-lysine. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[43] Xiu‐Ping Yan,et al. Photoactivated CdTe/CdSe quantum dots as a near infrared fluorescent probe for detecting biothiols in biological fluids. , 2009, Analytical chemistry.
[44] Yafeng Wu,et al. Enzyme-functionalized silica nanoparticles as sensitive labels in biosensing. , 2009, Analytical chemistry.
[45] M. C. Mancini,et al. Bioimaging: second window for in vivo imaging. , 2009, Nature nanotechnology.
[46] H. Ju,et al. Electrogenerated chemiluminescence from a CdSe nanocrystal film and its sensing application in aqueous solution. , 2004, Analytical chemistry.
[47] Hongyuan Chen,et al. Electrochemiluminescence immunosensor based on CdSe nanocomposites. , 2008, Analytical chemistry.
[48] Hongyuan Chen,et al. Dendritic CdO Nanomaterials Prepared by Electrochemical Deposition and Their Electrogenerated Chemiluminescence Behaviors in Aqueous Systems , 2008 .