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Physical Chemistry Chemical Physics, ISSN 1463-9076, 2009, Volume 11, Issue 1, pp. 83 - 93
The coil-globule transition, a tenet of the physics of polymers, has been identified in recent years as an important unresolved aspect of the initial stages of... 
POLYMER-CHAIN | COIL-GLOBULE TRANSITION | DENATURED STATE | FRET MEASUREMENTS | RIBONUCLEASE-A | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | SINGLE-MOLECULE FLUORESCENCE | X-RAY-SCATTERING | HYDROPHOBIC COLLAPSE | UNFOLDED PROTEINS | ENERGY-TRANSFER | Fluorescence | Protein Conformation | Proteins - chemistry | Index Medicus
Journal Article
Journal of Physical Chemistry B, ISSN 1520-6106, 08/2014, Volume 118, Issue 31, pp. 9460 - 9466
Journal Article
Small, ISSN 1613-6810, 12/2018, Volume 14, Issue 51, p. e1803156
Despite their impressive optical properties, lead halide perovskite quantum dots (PQDs) have not realized their potential, especially in bioimaging... 
quantum dots | cell imaging | coil–globule transition | perovskite | spray
Journal Article
Journal of the Taiwan Institute of Chemical Engineers, ISSN 1876-1070, 12/2018, Volume 93, pp. 63 - 69
LCST phase transition kinetics of aqueous poly(N-isopropylacrylamide) (PNIPAM) solutions was studied by using non-isothermal differential scanning calorimeter... 
Temperature-responsive | Kinetics | Poly(N-isopropylacrylamide) | Nucleation and growth models | LCST phase transition | ENGINEERING, CHEMICAL | COIL-GLOBULE TRANSITION | POLYMERS | BEHAVIOR
Journal Article
Journal of Polymer Science, Part B: Polymer Physics, ISSN 0887-6266, 07/2018, Volume 56, Issue 14, pp. 1053 - 1062
The coil-globule transition and dynamics of a lattice self-avoiding bond fluctuation polymer chain confined in slit are studied by Monte Carlo simulations. The... 
polymer | slit | coil–globule transition | scaling law | relaxation | POLYMER SCIENCE | ADSORBED POLYMERS | FLAT SURFACE | MODEL | ADSORPTION | MOLECULES | DNA | coil-globule transition | COMPUTER-SIMULATION | DIFFUSION | MONTE-CARLO-SIMULATION | NANOCHANNELS | Coils | Attraction | Transition temperature | Exponents | Computer simulation | Variations | Chains (polymeric) | Rotation | Relaxation time | Dilution | Chain dynamics | Scaling | Polymers
Journal Article
EPIGENETICS & CHROMATIN, ISSN 1756-8935, 05/2019, Volume 12, Issue 1, pp. 28 - 28
BackgroundLocalized functional domains within chromosomes, known as topologically associating domains (TADs), have been recently highlighted. In Drosophila,... 
GYRATION | RADIUS | CHROMATIN | Drosophila | GENETICS & HEREDITY | Polymer | Coil-globule | Epigenetic domains | Phase transition | Chromatin | Transcription | Insects | Information processing | Epigenetics | Scaling | Polymers | Chromosomes | Phase transitions | Deoxyribonucleic acid--DNA | Physics
Journal Article
Journal of Physical Chemistry B, ISSN 1520-6106, 07/2008, Volume 112, Issue 29, pp. 8447 - 8451
Journal Article
Langmuir, ISSN 0743-7463, 12/2016, Volume 32, Issue 50, pp. 13435 - 13445
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2017, Volume 7, Issue 1, pp. 17012 - 10
Journal Article
Macromolecules, ISSN 0024-9297, 12/2003, Volume 36, Issue 26, pp. 9929 - 9934
It has been suggested that the phase transition of the poly(N-isopropylacrylamide) (PNiPAM) aqueous solution consists of at least two different processes: (1)... 
COIL-GLOBULE TRANSITION | N-ISOPROPYLACRYLAMIDE | HYDROGELS | POLYMER SCIENCE | GELS | DSC | ELASTIN | DIFFERENTIAL SCANNING CALORIMETRY | SOLVENT | INVERSE TEMPERATURE TRANSITION | SURFACES
Journal Article
ISSN 1744-683X, 8/2014, Volume 1, Issue 37, pp. 7297 - 735
The phase separation of aqueous poly( N -isopropyl acrylamide) (PNIPAM) solutions is known to strongly affect their volume expansion behaviour and the elastic... 
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 12/2012, Volume 126, Issue 5, pp. 1754 - 1762
The effects of an applied magnetic field on the system composed of polyelectrolytes (PEs) and magnetic nanoparticles oppositely charged are studied by means of... 
coil‐globule transition | Monte Carlo method | magnetic nanoparticles | polyelectrolytes | coil-globule transition | POLYMER SCIENCE | PARTICLES | MACROMOLECULES | NANOPARTICLES | COLLAPSE | BRUSHES | POLYMER-CHAINS | MONTE-CARLO-SIMULATION | WATER | Polyelectrolytes | Adsorption | Magnetic fields | Analysis | Collapse | Nanoparticles | Polyethylenes | Monte Carlo methods | Reproduction | Computer simulation | Coiling
Journal Article
Colloid and Polymer Science, ISSN 0303-402X, 04/2015, Volume 293, Issue 4, pp. 1023 - 1033
The coil-globule transition of alkali metal (M+) and tetraalkyl ammonium (TAA(+)) polysulfonates, i.e., poly(styrene sulfonate)s (PSSM, PSSTAA) and poly(vinyl... 
Polyelectrolytes | Counterion binding | Organic solvents | Coil-globule transition | POLYMER SCIENCE | CHEMISTRY, PHYSICAL | GEL | CHARGE-DENSITY | COLLAPSE | CONDENSATION | POLY(ACRYLATE)S | BINDING | IONIZATION | Electric properties | Viscosity | Binding | Polystyrene resins | Solvents | Coiling | Alkali metals | Cations | Estimates
Journal Article