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Book
1989, Di 1 pan., ISBN 7538502270, 4, 2, 502 p., [8] p. of plates
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1994, Tai 1 ban., ISBN 9789571710556, 6, 242
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Book
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Book
Microchimica Acta, ISSN 0026-3672, 3/2016, Volume 183, Issue 3, pp. 1169 - 1176
A nanocomposite consisting of β-cyclodextrin and chemically reduced graphene oxide (β-CD-rGO) was synthesized by chemical reduction of graphene oxide in the...
Scanning electron microscopy | Chemistry | Analytical Chemistry | Transmission electron microscopy | Microengineering | FTIR | Waste water analysis | Characterization and Evaluation of Materials | Adsorptive stripping voltammetry | Nanochemistry | Nanotechnology | HEAVY-METAL IONS | GOLD NANOPARTICLES | CHEMISTRY, ANALYTICAL | PLATFORM | NANOCOMPOSITES | ELECTROCHEMICAL DETERMINATION | DETECTION LIMIT | WASTE-WATER | FABRICATION | CDSE/ZNS QUANTUM DOTS | FUNCTIONALIZED GRAPHENE | Stripping | Adsorptivity | Fourier transforms | Electron transfer | Voltammetry | Cyclodextrins | Electron microscopy | Wastewater | Glassy carbon | Electrodes | Chemical reduction | Nanocomposites | Microscopy | Graphene | Anodic stripping | Lead | Chemical synthesis | Functional groups | Electrons
Scanning electron microscopy | Chemistry | Analytical Chemistry | Transmission electron microscopy | Microengineering | FTIR | Waste water analysis | Characterization and Evaluation of Materials | Adsorptive stripping voltammetry | Nanochemistry | Nanotechnology | HEAVY-METAL IONS | GOLD NANOPARTICLES | CHEMISTRY, ANALYTICAL | PLATFORM | NANOCOMPOSITES | ELECTROCHEMICAL DETERMINATION | DETECTION LIMIT | WASTE-WATER | FABRICATION | CDSE/ZNS QUANTUM DOTS | FUNCTIONALIZED GRAPHENE | Stripping | Adsorptivity | Fourier transforms | Electron transfer | Voltammetry | Cyclodextrins | Electron microscopy | Wastewater | Glassy carbon | Electrodes | Chemical reduction | Nanocomposites | Microscopy | Graphene | Anodic stripping | Lead | Chemical synthesis | Functional groups | Electrons
Journal Article
Sensors & Actuators: B. Chemical, ISSN 0925-4005, 09/2013, Volume 186, pp. 380 - 387
A graphene oxide (GO) modified glassy carbon electrode (GCE), namely GO/GCE was prepared by covalent coupling method, which was characterized by atomic force...
Graphene oxide | Dopamine | Ascorbic acid | Modified electrode | OXIDATION | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | COMPOSITE FILM | SINGLE | GLASSY-CARBON ELECTRODE | NANOSHEETS | INSTRUMENTS & INSTRUMENTATION | ELECTROCHEMICAL DETECTION | ELECTROCATALYSIS | NANOTUBES | NANOCOMPOSITE | URIC-ACID | Atomic force microscopy | Electrochemical reactions | Graphene | Graphite | Detectors | Vitamin C | Electrochemistry | Phenols
Graphene oxide | Dopamine | Ascorbic acid | Modified electrode | OXIDATION | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | COMPOSITE FILM | SINGLE | GLASSY-CARBON ELECTRODE | NANOSHEETS | INSTRUMENTS & INSTRUMENTATION | ELECTROCHEMICAL DETECTION | ELECTROCATALYSIS | NANOTUBES | NANOCOMPOSITE | URIC-ACID | Atomic force microscopy | Electrochemical reactions | Graphene | Graphite | Detectors | Vitamin C | Electrochemistry | Phenols
Journal Article
Biosensors and Bioelectronics, ISSN 0956-5663, 07/2016, Volume 81, pp. 15 - 22
A label-free and highly sensitive electrochemical aptasensor for Pb was constructed using thionine (TH) as the signaling molecule and graphene (GR) as the...
Lead ion | Thionine | Graphene | Aptasensor | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | GLUCOSE SENSORS | ION | NANOSCIENCE & NANOTECHNOLOGY | DNAZYME | ENZYME | BIOPHYSICS | MODIFIED ELECTRODE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | DNA | SURFACE | BIOSENSOR | HEMIN/G-QUADRUPLEX | BLOOD | Gold - chemistry | Limit of Detection | Reproducibility of Results | Cations, Divalent - analysis | Aptamers, Nucleotide - chemistry | Drinking Water - analysis | Electrochemical Techniques - instrumentation | Water Pollutants, Chemical - analysis | Equipment Design | DNA, Single-Stranded - chemistry | Electrodes | Phenothiazines - chemistry | Rivers - chemistry | Lead - analysis | Biosensing Techniques - instrumentation | G-Quadruplexes | Graphite - chemistry | Graphite | Excavating machinery | Platforms | Construction | Bioelectricity | Selectivity | Logarithms | Biosensors
Lead ion | Thionine | Graphene | Aptasensor | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | GLUCOSE SENSORS | ION | NANOSCIENCE & NANOTECHNOLOGY | DNAZYME | ENZYME | BIOPHYSICS | MODIFIED ELECTRODE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | DNA | SURFACE | BIOSENSOR | HEMIN/G-QUADRUPLEX | BLOOD | Gold - chemistry | Limit of Detection | Reproducibility of Results | Cations, Divalent - analysis | Aptamers, Nucleotide - chemistry | Drinking Water - analysis | Electrochemical Techniques - instrumentation | Water Pollutants, Chemical - analysis | Equipment Design | DNA, Single-Stranded - chemistry | Electrodes | Phenothiazines - chemistry | Rivers - chemistry | Lead - analysis | Biosensing Techniques - instrumentation | G-Quadruplexes | Graphite - chemistry | Graphite | Excavating machinery | Platforms | Construction | Bioelectricity | Selectivity | Logarithms | Biosensors
Journal Article
Thin Solid Films, ISSN 0040-6090, 05/2012, Volume 520, Issue 15, pp. 5064 - 5069
In this paper a graphene (GR) modified carbon ionic liquid electrode that was obtained by one-step potentiostatic electroreduction of a graphene oxide solution...
Electrochemistry | Carbon ionic liquid electrode | Rutin | Graphene | OXIDATION | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | PERFORMANCE | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | HIGHLY EFFICIENT | DNA | MATERIALS SCIENCE, COATINGS & FILMS | Electrochemical reactions | Graphite
Electrochemistry | Carbon ionic liquid electrode | Rutin | Graphene | OXIDATION | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | PERFORMANCE | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | HIGHLY EFFICIENT | DNA | MATERIALS SCIENCE, COATINGS & FILMS | Electrochemical reactions | Graphite
Journal Article
Analytica Chimica Acta, ISSN 0003-2670, 01/2017, Volume 951, pp. 58 - 67
The development of high-performance biosensing platform is heavily dependent on the recognition property of the sensing layer and the output intensity of the...
In-situ deposition | DNA hybridization | Electrochemical sensor | Graphene oxide nanosheets | Silver nanoparticles | CHEMISTRY, ANALYTICAL | ACID | HYBRIDIZATION | LABEL-FREE DETECTION | NANOCOMPOSITES | AMPLIFICATION | SURFACE | ELECTRODE | AG NANOPARTICLES | BIOSENSOR | FACILE | Nanoparticles | Silver | Graphene | DNA | Graphite | Detectors | Genetic research | Electrochemistry
In-situ deposition | DNA hybridization | Electrochemical sensor | Graphene oxide nanosheets | Silver nanoparticles | CHEMISTRY, ANALYTICAL | ACID | HYBRIDIZATION | LABEL-FREE DETECTION | NANOCOMPOSITES | AMPLIFICATION | SURFACE | ELECTRODE | AG NANOPARTICLES | BIOSENSOR | FACILE | Nanoparticles | Silver | Graphene | DNA | Graphite | Detectors | Genetic research | Electrochemistry
Journal Article
ACS Catalysis, ISSN 2155-5435, 09/2012, Volume 2, Issue 9, pp. 1958 - 1966
Copper nanoparticles filled carbon nanotubes (CNTs) with varied tube diameters were prepared via a convenient sonication-assisted impregnation approach. CNTs...
Cu catalyst | confinement effect | carbon nanotubes | methyl acetate | hydrogenation | autoreduction effect | METHANOL SYNTHESIS | HIGH-PERFORMANCE | OXIDATION | CU NANOPARTICLES | NANOFIBERS | DIMETHYL ETHER | CHEMISTRY, PHYSICAL | REDUCTION | NITROGEN | FISCHER-TROPSCH SYNTHESIS | CATALYSTS
Cu catalyst | confinement effect | carbon nanotubes | methyl acetate | hydrogenation | autoreduction effect | METHANOL SYNTHESIS | HIGH-PERFORMANCE | OXIDATION | CU NANOPARTICLES | NANOFIBERS | DIMETHYL ETHER | CHEMISTRY, PHYSICAL | REDUCTION | NITROGEN | FISCHER-TROPSCH SYNTHESIS | CATALYSTS
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 12/2011, Volume 122, Issue 5, pp. 3369 - 3376
A kind of semiaromatic polyamide, poly(dodecamethylene terephthalamide) (PA12T) was synthesized via a polycondensation reaction of terephthalic acid and...
synthesis | decomposition | thermal properties | polyamides | mechanical properties | MELTING BEHAVIOR | CRYSTALLIZATION | POLYMERS | POLYMER SCIENCE | POLY(AMIDE-IMIDE)S | STABILITY | BLENDS | KINETICS | DEGRADATION | POLYIMIDES | Polyamide resins | Pyrolysis | Thermogravimetric analysis | Aromatic compounds | Thermal decomposition | Decomposition | Scission | Mechanical analysis
synthesis | decomposition | thermal properties | polyamides | mechanical properties | MELTING BEHAVIOR | CRYSTALLIZATION | POLYMERS | POLYMER SCIENCE | POLY(AMIDE-IMIDE)S | STABILITY | BLENDS | KINETICS | DEGRADATION | POLYIMIDES | Polyamide resins | Pyrolysis | Thermogravimetric analysis | Aromatic compounds | Thermal decomposition | Decomposition | Scission | Mechanical analysis
Journal Article
Materials Science & Engineering C, ISSN 0928-4931, 03/2017, Volume 72, pp. 692 - 700
A novel electrochemical non-enzymatic hydrogen peroxide (H O ) sensor has been developed based on Prussian blue (PB) and electrochemically reduced graphene...
Graphene oxide | Prussian blue | H2O2 | Living cells | In-situ synthesis | GOLD NANOPARTICLES | CELLS | MATERIALS SCIENCE, BIOMATERIALS | PERFORMANCE | SENSOR | IONIC LIQUID | CARBON NANOTUBES | COMPOSITE | ELECTROCHEMICAL DETECTION | ELECTRODE | NANOCOMPOSITE | Cell Line | Ferrocyanides - chemical synthesis | Limit of Detection | Microscopy, Electron, Scanning | Lipopolysaccharides - toxicity | Oxidation-Reduction | Ferrocyanides - chemistry | Oxides - chemistry | Macrophages - cytology | Electrochemical Techniques - instrumentation | Carbon - chemistry | Electrodes | Macrophages - metabolism | Animals | Hydrogen Peroxide - analysis | Spectrometry, X-Ray Emission | Microscopy, Atomic Force | Macrophages - drug effects | Mice | Graphite - chemistry | Atomic force microscopy | Enzymes | Hydrogen peroxide | Iron compounds | Graphene | Graphite | Sensors | Macrophages | Production processes | Reduction | Synthesis | Oxides | Detection
Graphene oxide | Prussian blue | H2O2 | Living cells | In-situ synthesis | GOLD NANOPARTICLES | CELLS | MATERIALS SCIENCE, BIOMATERIALS | PERFORMANCE | SENSOR | IONIC LIQUID | CARBON NANOTUBES | COMPOSITE | ELECTROCHEMICAL DETECTION | ELECTRODE | NANOCOMPOSITE | Cell Line | Ferrocyanides - chemical synthesis | Limit of Detection | Microscopy, Electron, Scanning | Lipopolysaccharides - toxicity | Oxidation-Reduction | Ferrocyanides - chemistry | Oxides - chemistry | Macrophages - cytology | Electrochemical Techniques - instrumentation | Carbon - chemistry | Electrodes | Macrophages - metabolism | Animals | Hydrogen Peroxide - analysis | Spectrometry, X-Ray Emission | Microscopy, Atomic Force | Macrophages - drug effects | Mice | Graphite - chemistry | Atomic force microscopy | Enzymes | Hydrogen peroxide | Iron compounds | Graphene | Graphite | Sensors | Macrophages | Production processes | Reduction | Synthesis | Oxides | Detection
Journal Article
Reactive and Functional Polymers, ISSN 1381-5148, 10/2018, Volume 131, pp. 326 - 332
A kind of hybrid core-shell nanoparticles (NPs) based on a novel chiral polyamide for the application in enantioselective crystallization was studied in this...
Polyamide | Core-shell nanoparticles | Optically active polyamide | Enantioselective crystallization | POLYMER SCIENCE | MICROSPHERES | PARTICLES | CHIRAL STATIONARY-PHASE | ENANTIOMERS | ENGINEERING, CHEMICAL | CIRCULAR-DICHROISM | FACILE SYNTHESIS | PENDANTS | ABILITY | COMPONENT | CHEMISTRY, APPLIED | HELICAL POLYMERS | Nanoparticles | Enantiomers | Silica | Polyamides
Polyamide | Core-shell nanoparticles | Optically active polyamide | Enantioselective crystallization | POLYMER SCIENCE | MICROSPHERES | PARTICLES | CHIRAL STATIONARY-PHASE | ENANTIOMERS | ENGINEERING, CHEMICAL | CIRCULAR-DICHROISM | FACILE SYNTHESIS | PENDANTS | ABILITY | COMPONENT | CHEMISTRY, APPLIED | HELICAL POLYMERS | Nanoparticles | Enantiomers | Silica | Polyamides
Journal Article
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