Journal of Chromatography A, ISSN 0021-9673, 12/2019, Volume 1608, p. 460424
Journal Article
ISSN 1359-7345, 2/2014, Volume 5, Issue 2, pp. 2646 - 2649
By combining the specific molecular recognition capability of MIPs and the asymmetric structure of Janus particles, the Janus MIP particles which were...
Journal Article
Kexue Tongbao/Chinese Science Bulletin, ISSN 0023-074X, 05/2019, Volume 64, Issue 13, pp. 1380 - 1391
Journal Article
Macromolecules, ISSN 0024-9297, 07/2011, Volume 44, Issue 14, pp. 5631 - 5637
A new interfacial nano and molecular imprinting approach is developed to prepare spherical molecularly imprinted polymers with well-controlled hierarchical...
SILICA SPHERES | SOLID PARTICLES | POLYMERS | POLYMER SCIENCE | RECOGNITION | POLYMERIZATION | BIOMOLECULES | HYDROPHILIC EXTERNAL LAYER | COMBINATION | ENZYME-INHIBITORS | WATER | nanoparticles | microspheres | Imprinting | Macromolecules | Polymerization | Pores | Epitopes | Silica | Monomers | Biological Sciences | Biochemistry and Molecular Biology | Biologi | Naturvetenskap | Natural Sciences | Biokemi och molekylärbiologi
SILICA SPHERES | SOLID PARTICLES | POLYMERS | POLYMER SCIENCE | RECOGNITION | POLYMERIZATION | BIOMOLECULES | HYDROPHILIC EXTERNAL LAYER | COMBINATION | ENZYME-INHIBITORS | WATER | nanoparticles | microspheres | Imprinting | Macromolecules | Polymerization | Pores | Epitopes | Silica | Monomers | Biological Sciences | Biochemistry and Molecular Biology | Biologi | Naturvetenskap | Natural Sciences | Biokemi och molekylärbiologi
Journal Article
Chemical Communications, ISSN 1359-7345, 10/2011, Volume 47, Issue 37, pp. 10359 - 10361
Molecularly imprinted polymer microspheres were synthesized by Pickering emulsion polymerization. Fluorescence spectroscopic investigations provided insights...
ANTIBODIES | POLYMERS | PROPRANOLOL | SERUM | BINDING | CHEMISTRY, MULTIDISCIPLINARY | Hydrophobic and Hydrophilic Interactions | Polymerization | Emulsions | Static Electricity | Molecular Imprinting - methods | Water - chemistry | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
ANTIBODIES | POLYMERS | PROPRANOLOL | SERUM | BINDING | CHEMISTRY, MULTIDISCIPLINARY | Hydrophobic and Hydrophilic Interactions | Polymerization | Emulsions | Static Electricity | Molecular Imprinting - methods | Water - chemistry | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
Journal Article
Environmental Science & Technology, ISSN 0013-936X, 03/2008, Volume 42, Issue 5, pp. 1687 - 1692
Poor selectivity of titania (TiO2) photocatalysis is unfavorable to photocatalytic removal of highly toxic low-level organic pollutants in polluted waters in...
Remediation and Control Technologies | ENVIRONMENTAL SCIENCES | REDUCTION | ENGINEERING, ENVIRONMENTAL | POLYANILINE | DECOMPOSITION | SLURRIES | ADSORPTION | ETS-10 | IRRADIATED TIO2 | Catalysis | Surface Properties | Titanium - chemistry | Nitrophenols - isolation & purification | Photochemistry
Remediation and Control Technologies | ENVIRONMENTAL SCIENCES | REDUCTION | ENGINEERING, ENVIRONMENTAL | POLYANILINE | DECOMPOSITION | SLURRIES | ADSORPTION | ETS-10 | IRRADIATED TIO2 | Catalysis | Surface Properties | Titanium - chemistry | Nitrophenols - isolation & purification | Photochemistry
Journal Article
Analytical Chemistry, ISSN 0003-2700, 07/2015, Volume 87, Issue 13, pp. 6951 - 6957
Electromembrane extraction (EME) and liquid-phase microextraction (LPME) were combined in a single step for the first time to realize simultaneous and clear...
WASTE-WATER SAMPLES | WHOLE-BLOOD | CHEMISTRY, ANALYTICAL | SAMPLE PREPARATION TECHNIQUES | ANALYTICAL-CHEMISTRY | HUMAN PLASMA | NONSTEROIDAL ANTIINFLAMMATORY DRUGS | BIOLOGICAL-FLUIDS | HPLC DETERMINATION | ELECTROKINETIC MIGRATION | CHROMATOGRAPHY-MASS-SPECTROMETRY | Pharmaceutical Preparations - isolation & purification | Chromatography, Liquid | Membranes, Artificial | Liquid Phase Microextraction | Mass Spectrometry | Extraction (Chemistry) | Usage | Sertraline | Analysis | Ketoprofen | Citalopram
WASTE-WATER SAMPLES | WHOLE-BLOOD | CHEMISTRY, ANALYTICAL | SAMPLE PREPARATION TECHNIQUES | ANALYTICAL-CHEMISTRY | HUMAN PLASMA | NONSTEROIDAL ANTIINFLAMMATORY DRUGS | BIOLOGICAL-FLUIDS | HPLC DETERMINATION | ELECTROKINETIC MIGRATION | CHROMATOGRAPHY-MASS-SPECTROMETRY | Pharmaceutical Preparations - isolation & purification | Chromatography, Liquid | Membranes, Artificial | Liquid Phase Microextraction | Mass Spectrometry | Extraction (Chemistry) | Usage | Sertraline | Analysis | Ketoprofen | Citalopram
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 09/2014, Volume 53, Issue 40, pp. 10687 - 10690
The tendency of bacteria to assemble at oil–water interfaces can be utilized to create microbial recognition sites on the surface of polymer beads. In this...
interfaces | Pickering emulsion | pre‐polymers | molecular imprinting | self‐assembly | pre-polymers | self-assembly | THIN-FILMS | CELLS | PROTEIN | RECOGNITION | POLYMER SURFACES | MEDIATED LITHOGRAPHY | CHEMISTRY, MULTIDISCIPLINARY | BEADS | NANOPARTICLES | WATER | Emulsions - chemistry | Surface Properties | Bacteria - cytology | Water - chemistry | Polymerization | Polymers - chemistry | Oils - chemistry | Chitosan - analogs & derivatives | Molecular Imprinting - methods | Bacteria | Polymers | Detectors | Microorganisms | Emulsions | Crosslinking | Chitosan | Biosensors | Beads | Recognition | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
interfaces | Pickering emulsion | pre‐polymers | molecular imprinting | self‐assembly | pre-polymers | self-assembly | THIN-FILMS | CELLS | PROTEIN | RECOGNITION | POLYMER SURFACES | MEDIATED LITHOGRAPHY | CHEMISTRY, MULTIDISCIPLINARY | BEADS | NANOPARTICLES | WATER | Emulsions - chemistry | Surface Properties | Bacteria - cytology | Water - chemistry | Polymerization | Polymers - chemistry | Oils - chemistry | Chitosan - analogs & derivatives | Molecular Imprinting - methods | Bacteria | Polymers | Detectors | Microorganisms | Emulsions | Crosslinking | Chitosan | Biosensors | Beads | Recognition | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
Journal Article
Methods in Molecular Biology, ISSN 1064-3745, 2017, Volume 1575, pp. 353 - 362
Janus particles, which have two or more distinct physical surfaces, provide a number of potential applications in many fields. However, it is difficult to...
Drug delivery | Self-propelled microengine | Pickering emulsion | Janus particles | Molecular imprinting | Colloidosomes | Polymers - chemistry | Polymers - chemical synthesis | Colloids | Molecular Imprinting - methods
Drug delivery | Self-propelled microengine | Pickering emulsion | Janus particles | Molecular imprinting | Colloidosomes | Polymers - chemistry | Polymers - chemical synthesis | Colloids | Molecular Imprinting - methods
Journal Article
Chemical Communications, ISSN 1359-7345, 08/2012, Volume 48, Issue 66, pp. 8198 - 8200
A new strategy of molecular imprinting to prepare spherical hydrogels via water-in-oil Pickering emulsion polymerization was developed. The imprinted hydrogels...
HEMOGLOBIN | RECOGNITION | ACRYLAMIDE | CAPTURE | CHEMISTRY, MULTIDISCIPLINARY | POLYMER BEADS | WATER | Emulsions - chemistry | Water - chemistry | Polymerization | Kinetics | Oils - chemistry | Proteins - chemistry | Spectroscopy, Fourier Transform Infrared | Hydrogels - chemistry | Molecular Imprinting | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
HEMOGLOBIN | RECOGNITION | ACRYLAMIDE | CAPTURE | CHEMISTRY, MULTIDISCIPLINARY | POLYMER BEADS | WATER | Emulsions - chemistry | Water - chemistry | Polymerization | Kinetics | Oils - chemistry | Proteins - chemistry | Spectroscopy, Fourier Transform Infrared | Hydrogels - chemistry | Molecular Imprinting | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 01/2014, Volume 131, Issue 1, pp. np - n/a
ABSTRACT Pickering emulsion polymerization was used to synthesize molecularly imprinted polymer beads for the selective recognition of 17‐β‐estradiol under...
emulsion polymerization | nanowires and nanocrystals | molecular recognition | nanoparticles | POLYMER SCIENCE | SUSPENSION POLYMERIZATION | 17-BETA-ESTRADIOL | Polymerization | Polymer industry | Polymers | Analysis | Estrogen | Imprinted polymers | Emulsion polymerization | Polarity | Affinity | Beads | Recognition | Adsorbents | Steroids | Biological Sciences | Atom- och molekylfysik och optik | Fysik | Physical Sciences | Naturvetenskap | nanowires | Biokemi och molekylärbiologi | Atom and Molecular Physics and Optics | Biochemistry and Molecular Biology | Biologi | Natural Sciences | and nanocrystals
emulsion polymerization | nanowires and nanocrystals | molecular recognition | nanoparticles | POLYMER SCIENCE | SUSPENSION POLYMERIZATION | 17-BETA-ESTRADIOL | Polymerization | Polymer industry | Polymers | Analysis | Estrogen | Imprinted polymers | Emulsion polymerization | Polarity | Affinity | Beads | Recognition | Adsorbents | Steroids | Biological Sciences | Atom- och molekylfysik och optik | Fysik | Physical Sciences | Naturvetenskap | nanowires | Biokemi och molekylärbiologi | Atom and Molecular Physics and Optics | Biochemistry and Molecular Biology | Biologi | Natural Sciences | and nanocrystals
Journal Article
Chemical Communications, ISSN 1359-7345, 01/2011, Volume 47, Issue 37, pp. 10359 - 10361
Molecularly imprinted polymer microspheres were synthesized by Pickering emulsion polymerization. Fluorescence spectroscopic investigations provided insights...
Microspheres | Spectroscopy | Emulsions | Imprinted polymers | Emulsion polymerization | Fluorescence | Molecular imprinting | Recognition
Microspheres | Spectroscopy | Emulsions | Imprinted polymers | Emulsion polymerization | Fluorescence | Molecular imprinting | Recognition
Journal Article
Analytical Chemistry, ISSN 0003-2700, 2019, Volume 91, Issue 13, pp. 8267 - 8273
Isolation of substances by liquid-phase microextraction (LPME) or electromembrane extraction (EME) is becoming more and more important in analytical chemistry....
OPERATIONAL SOLUTIONS | PRECONCENTRATION | RECOVERY | CHEMISTRY, ANALYTICAL | BASIC DRUGS | REMOVAL | HUMAN PLASMA | MEMBRANE | EXHAUSTIVE EXTRACTION | SEPARATION | WATER SAMPLES | Analytical chemistry | Organic chemistry | Recovery | Equilibrium | Liquid phases | Mass transfer
OPERATIONAL SOLUTIONS | PRECONCENTRATION | RECOVERY | CHEMISTRY, ANALYTICAL | BASIC DRUGS | REMOVAL | HUMAN PLASMA | MEMBRANE | EXHAUSTIVE EXTRACTION | SEPARATION | WATER SAMPLES | Analytical chemistry | Organic chemistry | Recovery | Equilibrium | Liquid phases | Mass transfer
Journal Article
International Immunopharmacology, ISSN 1567-5769, 01/2018, Volume 54, p. 198
Objectives: Assess the efficacy and safety of Broncho-Vaxom in pediatric recurrent respiratory tract infections (RRTIs). Methods: Published randomized...
Immunoglobulin M | Pediatrics | Therapy | Control methods | CD8 antigen | Immunoglobulin G | Clinical trials | Systematic review | Wheezing | Lymphocytes T | Infections | Immunoglobulin A | Respiratory tract | Lymphocytes | Respiratory tract diseases | Safety | Medical research | Effectiveness | CD3 antigen | Fever | Cough | CD4 antigen | Antibiotics | Respiratory diseases | Vasoactive intestinal peptide
Immunoglobulin M | Pediatrics | Therapy | Control methods | CD8 antigen | Immunoglobulin G | Clinical trials | Systematic review | Wheezing | Lymphocytes T | Infections | Immunoglobulin A | Respiratory tract | Lymphocytes | Respiratory tract diseases | Safety | Medical research | Effectiveness | CD3 antigen | Fever | Cough | CD4 antigen | Antibiotics | Respiratory diseases | Vasoactive intestinal peptide
Journal Article
Chemical Communications, ISSN 1359-7345, 03/2014, Volume 50, Issue 20, pp. 2646 - 2649
By combining the specific molecular recognition capability of MIPs and the asymmetric structure of Janus particles, the Janus MIP particles which were...
PICKERING EMULSION | NANOPARTICLES | RECOGNITION | MICROMOTORS | INTERFACE | MICROSPHERES | COLLOIDAL PARTICLES | MICROPARTICLES | CHEMISTRY, MULTIDISCIPLINARY | COLLOIDOSOMES | WATER | Colloids - chemistry | Microscopy, Electron, Scanning | Emulsions | Water - chemistry | Polymers - chemistry | Drug Delivery Systems | Molecular Imprinting | Drug delivery systems | Imprinted polymers | Molecular structure | Asymmetry | Janus | Recognition | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
PICKERING EMULSION | NANOPARTICLES | RECOGNITION | MICROMOTORS | INTERFACE | MICROSPHERES | COLLOIDAL PARTICLES | MICROPARTICLES | CHEMISTRY, MULTIDISCIPLINARY | COLLOIDOSOMES | WATER | Colloids - chemistry | Microscopy, Electron, Scanning | Emulsions | Water - chemistry | Polymers - chemistry | Drug Delivery Systems | Molecular Imprinting | Drug delivery systems | Imprinted polymers | Molecular structure | Asymmetry | Janus | Recognition | Naturvetenskap | Natural Sciences | Kemi | Chemical Sciences
Journal Article
Trends in Analytical Chemistry, ISSN 0165-9936, 12/2019, Volume 121, p. 115674
With the increasing demand of accurate and sensitive diagnosis for criminal investigation, magnetic particles (MPs) have attracted more and more attentions in...
Magnetic particles | Forensic science | Biomolecule extraction | Forensic toxicological analysis | Magnetic solid-phase extraction | Cell separation | Latent fingerprints
Magnetic particles | Forensic science | Biomolecule extraction | Forensic toxicological analysis | Magnetic solid-phase extraction | Cell separation | Latent fingerprints
Journal Article
Journal of chromatography. A, 08/2019, p. 460424
Aristolochic acid (AA) I and AA II, which have been classified as carcinogenic to human and have been proven to be nephrotoxic, are bioactive ingredients of...
Journal Article
Trends in Analytical Chemistry, ISSN 0165-9936, 10/2017, Volume 95, pp. 47 - 56
Electromembrane extraction (EME) was inspired by solid-phase microextraction and developed from hollow fiber liquid-phase microextraction in 2006 by applying...
Selective extraction | Sample preparation | Exhaustive extraction | Electromembrane extraction (EME) | Microextraction | Mass transfer | Soft extraction | ACIDIC DRUGS | CHEMISTRY, ANALYTICAL | BASIC DRUGS | SOLID-PHASE MICROEXTRACTION | FREE LIQUID-MEMBRANES | ELECTRO MEMBRANE EXTRACTION | PULSED ELECTROMEMBRANE | REINFORCED HOLLOW-FIBER | CAPILLARY-ELECTROPHORESIS | HUMAN URINE | REAL-TIME | Electric fields | Electrolysis
Selective extraction | Sample preparation | Exhaustive extraction | Electromembrane extraction (EME) | Microextraction | Mass transfer | Soft extraction | ACIDIC DRUGS | CHEMISTRY, ANALYTICAL | BASIC DRUGS | SOLID-PHASE MICROEXTRACTION | FREE LIQUID-MEMBRANES | ELECTRO MEMBRANE EXTRACTION | PULSED ELECTROMEMBRANE | REINFORCED HOLLOW-FIBER | CAPILLARY-ELECTROPHORESIS | HUMAN URINE | REAL-TIME | Electric fields | Electrolysis
Journal Article
Frontiers in Chemistry, ISSN 2296-2646, 09/2017, Volume 5
In this work, we developed an efficient “molecularly imprinted polymer microzymes and inorganic magnetic nanozymes” synergistic catalysis strategy for the...
synergistic catalysis | NATURVETENSKAP | Sciences | molecular imprinting | peroxidase-like enzyme | disulfide peptides | polymeric microzyme | inorganic nanozyme | cyclization | NATURAL SCIENCES
synergistic catalysis | NATURVETENSKAP | Sciences | molecular imprinting | peroxidase-like enzyme | disulfide peptides | polymeric microzyme | inorganic nanozyme | cyclization | NATURAL SCIENCES
Journal Article
ISSN 2041-6520, 2/2019, Volume 1, Issue 7, pp. 2179 - 2185
We took advantage of the iron binding affinity of apoferritin to immobilize iron-sulfur clusters into apoferritin up to 312 moieties per protein, with a...
Journal Article
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