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Angewandte Chemie International Edition, ISSN 1433-7851, 07/2018, Volume 57, Issue 28, pp. 8629 - 8633
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 04/2016, Volume 55, Issue 17, pp. 5304 - 5308
... based on these macrocyclic arenes have also attracted much attention for their wide applications in the fields of chiral recognition, self‐assembly, chiral... 
enantioselective recognition | triptycenes | macrocycles | host–guest chemistry | chiral resolution | host-guest chemistry | CAVITANDS | OPTICAL RESOLUTION | CHEMISTRY, MULTIDISCIPLINARY | MOLECULAR RECOGNITION | ORGANIC CAGE | COMPLEXATION | BINDING | CALIXARENES | Enantiomers | Molecular structure | Chemical synthesis | Methylene | Conformation
Journal Article
Chemistry – A European Journal, ISSN 0947-6539, 10/2018, Volume 24, Issue 58, pp. 15502 - 15506
Chiral recognition as an intrinsic process of life, plays a crucial role in chemical systems, and further forms various architectures in the resulted functional materials... 
host–guest systems | surface chemistry | chiral matching | supramolecular chemistry | macroscopic recognition | host-guest systems | SELF-ASSEMBLED MONOLAYERS | DRUG-DELIVERY | MEMBRANES | MODEL | CHEMISTRY, MULTIDISCIPLINARY | TRANSPORT | SURFACE | INTERFACES | CHEMISTRY | SELECTION | AGGREGATION | Enantiomers | Calixarenes | Organic chemistry | Drug delivery systems | Naproxen | Drug delivery | Droplets | Recognition
Journal Article
Polymer International, ISSN 0959-8103, 02/2016, Volume 65, Issue 2, pp. 245 - 249
... hydrogels which undergo dramatic changes in water uptake on addition of cyclodextrin. Furthermore we could demonstrate a molecular recognition between para ‐ and meta... 
chiral recognition | isobornyl methacrylate | enantiomers | hydrogels | cyclodextrin | inclusion complexes | Cyclodextrin | Inclusion complexes | Isobornyl methacrylate | Hydrogels | Enantiomers | Chiral recognition | MONOMERS | POLYMER SCIENCE | CAMPHOR | BEHAVIOR | STATIONARY PHASES | LIQUID-CHROMATOGRAPHY | BETA-CYCLODEXTRIN | Glycol dimethacrylates | Networks | Swelling | Cyclodextrins | Differentiation | Recognition
Journal Article
Analytical Chemistry, ISSN 0003-2700, 02/2017, Volume 89, Issue 3, pp. 1900 - 1906
.... This study is the first example showing how an ordered structure influences chiral recognition. 
DENSITY FUNCTIONALS | CHEMISTRY, ANALYTICAL | CHIRAL RECOGNITION | AMINO-ACIDS | TRYPTOPHAN ISOMERS | COMPLEXES | BETA-CYCLODEXTRIN | CHEMISTRY | WATER-MOLECULES | SEPARATION | EXCITED-STATES
Journal Article
Electroanalysis, ISSN 1040-0397, 04/2016, Volume 28, Issue 4, pp. 868 - 873
.... After interaction, the obvious difference of peak currents of L‐Trp and D‐Trp was obtained, indicating this strategy could be employed to chiral recognition of Trp enantiomers... 
Nanohybrids | Electrochemical methods | Chiral recognition | Tryptophan enantiomers | Fourier transforms | Transmission electron microscopy | Graphene | Tryptophan | Nanostructure | Enantiomers | Recognition | Electrochemical impedance spectroscopy
Journal Article
Polymer, ISSN 0032-3861, 01/2018, Volume 136, pp. 92 - 100
.... Such star polymer exhibited excellent chiral recognition ability. The contact angle of the star polymer is strongly dependent on the chirality... 
Chiral recognition | Star polymer | Core-first | POLYMER SCIENCE | STATIONARY PHASES | LIVING POLYMERIZATION | COPOLYMERS | NETWORKS | NANOPARTICLES | FLUORESCENT | FACILE SYNTHESIS | ASSEMBLIES | AMINO-ACIDS | ENANTIOSELECTIVE RECOGNITION | Polymerization | Palladium | Polymer industry | Enantiomers | Polymers
Journal Article
Journal Article
Electrochemistry Communications, ISSN 1388-2481, 11/2015, Volume 60, pp. 60 - 63
Graphene quantum dots (GQDs) were prepared by pyrolysis of citric acid, and then incorporated into β-cyclodextrin (β-CD) via H-bonds between the... 
β-Cyclodextrin | Tryptophan isomers | Chiral interface | Electrochemical recognition | Graphene quantum dots | ELECTROCHEMISTRY | DOTS | beta-Cyclodextrin
Journal Article
Chemistry – A European Journal, ISSN 0947-6539, 07/2017, Volume 23, Issue 38, pp. 9137 - 9143
...) as compared to the non‐assembled nanoclusters. Furthermore, photoluminescence of the crystalline assembly of nanoclusters served as a visual marker for chiral recognition of d and l enantiomers of tryptophan, with subsequent separation... 
chiral recognition | nanoclusters | photoluminescence | chiral separation | crystalline assembly | NANOPARTICLES | AMINO-ACIDS | SILVER | EMISSION | CHEMISTRY, MULTIDISCIPLINARY | NANOCHANNEL | QUANTUM DOTS | Tryptophan | Enantiomers | Electron microscopy | Analysis | Optical properties | Photoluminescence | Atomic force microscopy | Separation | Stabilization | Luminescence | X-ray diffraction | Attachment | Powder | L-Tryptophan | Atomic structure | Assembly | Crystal structure | Gold | Complexation | Ions | Photons | Nanostructure | Zinc | Transmission electron microscopy | Diffraction | X rays | Ligands | Recognition
Journal Article