[1] | Manea F,Houillon F B,Pasquato L,et al.Nanozymes:Gold-Nanoparticle-Based Transphosphorylation Catalysts[J]. Angew Chem Int Ed,2004,43(45):6165-6169. | [2] | Gao L,Zhuang J,Nie L,et al.Intrinsic Peroxidase-like Activity of Ferromagnetic Nanoparticles[J]. Nat Nanotechnol,2007,2(9):577-583. | [3] | Kotov N A.Inorganic Nanoparticles as Protein Mimics[J]. Science,2010,330(6001):188-189. | [4] | Wei H,Wang E.Nanomaterials with Enzyme-like Characteristics(nanozymes):Next-generation Artificial Enzymes[J]. Chem Soc Rev,2013,42(14):6060-6093. | [5] | Yu F,Huang Y,Cole A J,et al.The Artificial Peroxidase Activity of Magnetic Iron Oxide Nanoparticles and Its Application to Glucose Detection[J]. Biomaterials,2009,30(27):4716-4722. | [6] | Karakoti A,Singh S,Dowding J M,et al.Redox-active Radical Scavenging Nanomaterials[J]. Chem Soc Rev,2010,39(11):4422-4432. | [7] | Tarnuzzer R W,Colon J,Patil S,et al.Vacancy Engineered Ceria Nanostructures for Protection from Radiation-Induced Cellular Damage[J]. Nano Lett,2005,5(12):2573-2577. | [8] | Silva G A.Nanomedicine:Seeing the Benefits of Ceria[J]. Nat Nanotechnol,2006,1(2):92-94. | [9] | Mu J,Wang Y,Zhao M,et al.Intrinsic Peroxidase-like Activity and Catalase-like Activity of Co3O4 Nanoparticles[J]. Chem Commun,2012,48(19):2540-2542. | [10] | Chen W,Chen J,Liu A L,et al.Peroxidase-Like Activity of Cupric Oxide Nanoparticle[J]. ChemCatChem,2011,3(7):1151-1154. | [11] | Wan Y,Qi P,Zhang D,et al.Manganese Oxide Nanowire-mediated Enzyme-linked Immunosorbent Assay[J]. Biosens Bioelectron,2012,33(1) :69-74. | [12] | Andr R,Nat lio F,Humanes M,et al. V2O5 Nanowires with an Intrinsic Peroxidase-Like Activity[J]. Adv Funct Mater,2011,21(3):501-509. | [13] | Alden M,Lai X,Goodman D W.Onset of Catalytic Activity of Gold Clusters on Titania with the Appearance of Nonmetallic Properties[J]. Science,1998,281(5383):1647-1650. | [14] | Beltrame P,Comotti M,Pina C D,et al.Aerobic Oxidation of Glucose I.Enzymatic Catalysis[J]. J Catal,2004,228(2):282-287. | [15] | Wang S,Chen W,Liu A L,et al.Comparison of the Peroxidase-Like Activity of Unmodified, Amino-Modified, and Citrate-Capped Gold Nanoparticles[J]. Chem Phys Chem,2012,13(5):1199-1204. | [16] | Zhang L,Laug L,Münchgesang W,et al.Reducing Stress on Cells with Apoferritin-encapsulated Platinum Nanoparticles[J]. Nano Lett,2010,10(1):219-223. | [17] | Clark A,Zhu A P,Sun K,et al.Cerium Oxide and Platinum Nanoparticles Protect Cells from Oxidant-mediated Apoptosis[J]. J Nanopart Res,2011,13(10):5547-5555. | [18] | He W,Liu Y,Yuan J,et al.Au@Pt Nanostructures as Oxidase and Peroxidase Mimetics for Use in Immunoassays[J]. Biomaterials,2011,32(4):1139-1147. | [19] | Liu J,Hu X,Hou S,et al.Au@Pt Core/Shell Nanorods with Peroxidase- and Ascorbate Oxidase-like Activities for Improved Detection of Glucose[J]. Sens Actuators B,2012,166(20):708-714. | [20] | Song Y,Wang X,Zhao C,et al.Label-Free Colorimetric Detection of Single Nucleotide Polymorphism by Using Single-Walled Carbon Nanotube Intrinsic Peroxidase-Like Activity[J]. Chem Eur J,2010,16(12):3617-3621. | [21] | Cui R,Han Z,Zhu J J.Helical Carbon Nanotubes: Intrinsic Peroxidase Catalytic Activity and Its Application for Biocatalysis and Biosensing[J]. Chem Eur J,2011,17(34):9377-9384. | [22] | Liu S,Tian J,Wang L,et al.A General Strategy for the Production of Photoluminescent Carbon Nitride Dots from Organic Amines and Their Application as Novel Peroxidase-like Catalysts for Colorimetric Detection of H2O2 and Glucose[J]. RSC Adv,2012,2(2):411-413. | [23] | Shi W,Wang Q,Long Y,et al.Carbon Nanodots as Peroxidase Mimetics and Their Applications to Glucose Detection[J]. Chem Commun,2011,47(23):6695-6697. | [24] | Wang X,Qu K,Xu B,et al.Multicolor Luminescent Carbon Nanoparticles:Synthesis, Supramolecular Assembly with Porphyrin, Intrinsic Peroxidase-like Catalytic Activity and Applications[J]. Nano Res,2011,4(9):908-920. | [25] | Dai Z,Liu S,Bao J,et al.Nanostructured FeS as a Mimic Peroxidase for Biocatalysis and Biosensing[J]. Chem Eur J,2009,15(17):4321-4326. | [26] | Dutta A K,Maji S K,Srivastava D N,et al.Synthesis of FeS and FeSe Nanoparticles from a Single Source Precursor:A Study of Their Photocatalytic Activity, Peroxidase-Like Behavior, and Electrochemical Sensing of H2O2[J]. ACS Appl Mater Interfaces,2012,4(4):1919-1927. | [27] | Roy P,Lin Z H,Liang C T,et al.Synthesis of Enzyme Mimics of Iron Telluride Nanorods for the Detection of Glucose[J]. Chem Commun,2012,48(34):4079-4081. | [28] | Peng C,Jiang B,Liu Q,et al.Graphene-templated Formation of Two-dimensional Lepidocrocite Nanostructures for High-efficiency Catalytic Degradation of Phenols[J]. Energy Environ Sci,2011,4(6):2035-2040. | [29] | Wang Y,Chen S,Ni F,et al.Peroxidase-Like Layered Double Hydroxide Nanoflakes for Electrocatalytic Reduction of H2O2[J]. Electroanalysis,2009,21(19):2125-2132. | [30] | Cui L,Yin H,Dong J,et al.A mimic Peroxidase Biosensor Based on Calcined Layered Double Hydroxide for Detection of H2O2[J]. Biosens Bioelectron,2011,26(7):3278-3283. | [31] | Cheng Y,Dong Y.Screening Melamine Contaminant in Eggs with Portable Surface-enhanced Raman Spectroscopy Based on Gold Nanosubstrate[J]. Food Control,2011,22(5):685-689. | [32] | Asati A,Santra S,Kaittanis C,et al.Oxidase-Like Activity of Polymer-Coated Cerium Oxide Nanoparticles[J]. Angew Chem Int Ed,2009,48(13):2308-2312. | [33] | Peng F F,Zhang Y,Gu N.Size-dependent Peroxidase-like Catalytic Activity of Fe3O4 Nanoparticles[J]. Chinese Chem Lett,2008,19(6):730-733. | [34] | Wan Y,Qi P,Zhang D,et al.Manganese Oxide Nanowire-mediated Enzyme-linked Immunosorbent Assay[J]. Biosens Bioelectron,2012,33(1):69-74. | [35] | Liu S,Lu F,Xing R,et al.Structural Effects of Fe3O4 Nanocrystals on Peroxidase-Like Activity[J]. Chem Eur J,2011,17(2):620-625. | [36] | Nasir Baig R B,Varma R S. A Facile One-pot Synthesis of Ruthenium Hydroxide Nanoparticles on Magnetic Silica:Aqueous Hydration of Nitriles to Amides[J]. Chem Commun,2012,48(50):6220-6222. | [37] | He W,Wu X,Liu J,et al.Design of AgM Bimetallic Alloy Nanostructures(M=Au,Pd,Pt) with Tunable Morphology and Peroxidase-like Activity[J]. Chem Mater,2010,22(9):2988-2994. | [38] | Zhu A P,Sun K,Petty H R.Titanium Doping Reduces Superoxide Dismutase Activity, but not Oxidase Activity, of Catalytic CeO2 Nanoparticles[J]. Inorg Chem Commun,2012,15(12):235-237. | [39] | Lee Y,Garcia M A,Frey Huls N A,et al. Synthetic Tuning of the Catalytic Properties of Au-Fe3O4 Nanoparticles[J]. Angew Chem Int Ed,2010,49(7):1271-1274. | [40] | Liu Z,Zhao B,Shi Y,et al.Novel Nonenzymatic Hydrogen Peroxide Sensor Based on Iron Oxide-Silver Hybrid Submicrospheres[J]. Talanta,2010,81(4/5):1650-1654. | [41] | Chen G X,Zhao Y,Fu G,et al.Interfacial Effects in Iron-Nickel Hydroxide-Platinum Nanoparticles Enhance Catalytic Oxidation[J]. Science,2014,344(6183):495-499. | [42] | Singh S,Dosani T,Karakoti A S,et al.A Phosphate-dependent Shift in Redox State of Cerium Oxide Nanoparticles and Its Effects on Catalytic Properties[J]. Biomaterials,2011,32(28):6745-6753. | [43] | Bao Z Y,Lei D Y,Jiang R,et al.Bifunctional Au@Pt Core-shell Nanostructures for in situ Monitoring of Catalytic Reactions by Surface-enhanced Raman Scattering Spectroscopy[J]. Nanoscale,2014,6(15):9063-9070. | [44] | Wei H,Wang E.Fe3O4 Magnetic Nanoparticles as Peroxidase Mimetics and Their Applications in H2O2 and Glucose Detection[J]. Anal Chem,2008,80(6):2250-2254. | [45] | Chang Q,Deng K,Zhu L,et al.Determination of Hydrogen Peroxide with the Aid of Peroxidase-like Fe3O4 Magnetic Nanoparticles as the Catalyst[J]. Microchim Acta,2009,165(3):299-305. | [46] | Wang L,Shen A,Li X,et al.Inclusion of Guest Materials in Aqueous Coordination Network Shells Spontaneously Generated by Reacting 2,5-Dimercapto-1,3,4-thiadiazole with Nanoscale Metallic Silver[J]. RSC Adv,2014,4(65):34294-34302. | [47] | Gao Y,Wang G,Huang H,et al.Fluorometric Method for the Determination of Hydrogen Peroxide and Glucose with Fe3O4 as Catalyst[J]. Talanta,2011,85(2):1075-1080. | [48] | Zhang L,Zhai Y,Gao N,et al.Sensing H2O2 with Layer-by-layer Assembled Fe3O4 PDDA Nanocomposite Film[J]. Electrochem Commun,2008,10(10):1524-1526. | [49] | Jiao X,Song H,Zhao H,et al.Well-redispersed Ceria Nanoparticles:Promising Peroxidase Mimetics for H2O2 and Glucose Detection[J]. Anal Methods,2012,4(10):3261-3267. | [50] | Song Y,Qu K,Zhao C,et al.Graphene Oxide:Intrinsic Peroxidase Catalytic Activity and Its Application to Glucose Detection[J]. Adv Mater,2010,22(19):2206-2210. | [51] | Fan Y,Huang Y.The Effective Peroxidase-like Activity of Chitosan-functionalized CoFe2O4 Nanoparticles for Chemiluminescence Sensing of Hydrogen Peroxide and Glucose[J]. Analyst,2012,137(5):1225-1231. | [52] | Jiang X,Sun C,Guo Y,et al.Peroxidase-like Activity of Apoferritin Paired Gold Clusters for Glucose Detection[J]. Biosens Bioelectron,2015,64:165-170. | [53] | Li J,Lv L,Zhang G,et al.Core-shell Fructus Broussonetia-like Au@Ag@Pt Nanoparticles as Highly Efficient Peroxidase Mimetics for Supersensitive Resonance-enhanced Raman Sensing[J]. Anal Methods,2016,8(9):2097-2105. | [54] | Ding N,Yan N,Ren C,et al.Colorimetric Determination of Melamine in Dairy Products by Fe3O4 Magnetic Nanoparticles-H2O2-ABTS Detection System[J]. Anal Chem,2010,82(13):5897-5899. | [55] | Li J,Zhang G,Wang L,et al.Simultaneous Enzymatic and SERS Properties of Bifunctional Chitosan-modified Popcorn-like Au-Ag Nanoparticles for High Sensitive Detection of Melamine in Milk Powder[J]. Talanta,2015,140(1):204-211. | [56] | Qiu Z L,Shu J,Jin G X,et al.Invertase-labeling Gold-dendrimer for in situ Amplified Detection Mercury(Ⅱ) with Glucometer Readout and Thymine-Hg2+-Thymine Coordination Chemistry[J]. Biosens Bioelectron,2016,77:681-686. | [57] | Wang J,Ren K,He B J.Synthesis and Sensing Behavior of Fluorescence “Turn-on” Chemosensors Based on Rhodamine for Hg(Ⅱ) Detection[J]. Sens Actuators B,2016,224:465-477. | [58] | Long Y J,Li Y F,Liu Y,et al.Visual Observation of the Mercury-stimulated Peroxidase Mimetic Activity of Gold Nanoparticles[J]. Chem Commun,2011,47(43):11939-11941. | [59] | Lien C W,Huang C C,Chang H T.Peroxidase-mimic Bismuth-gold Nanoparticles for Determining the Activity of Thrombin and Drug Screening[J]. Chem Commun,2012,48(64):7952-7954. | [60] | Asati A,Santra S,Kaittanis C,et al.Oxidase-like Activity of Polymer-coated Cerium Oxide Nanoparticles[J]. Angew Chem Int Ed,2009,48(13):2308-2312. |
|