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Journal of Applied Polymer Science, ISSN 0021-8995, 07/2008, Volume 109, Issue 2, pp. 1248 - 1256
Journal Article
2. Accelerated hydrolytic degradation of ester-containing biobased epoxy resins (Electronic supplementary information (ESI) available: 1H NMR and 13C NMR data obtained from VA (Fig. S1); 13C NMR data obtained from EVA and AVA (Fig. S2); curing of EVA, ESA, E4HBA, ESO and DGEBA with MHHPA (catalyzed by 1-MI) to form an epoxy resin (Schemes S1–S5); DSC and TGA data obtained from the EVA monomer (Fig. S3); TGA data obtained from epoxy resins containing different ESO and DGEBA contents (Fig. S4); Tg as a function of post-curing time for EVA- and ESO-based epoxy resins (Fig. S5); optical microscopy images of epoxy resins before second-stage curing with differing ESO content (wt% ESO is the ESO content relative to the total amount of ESO and DGEBA) (Fig. S6); Fourier transform of optical micrographs for an epoxy resin containing 40 wt% ESO and particle size distributions obtained through image analysis of optical micrographs (Fig. S7); SEM images of ESO-based and DGEBA-based epoxy resins (Fig. S8); closer view of mass spectra obtained from degradation products of an ESO-based epoxy resin (Fig. S9); proposed chemical structures and molecular weight for peaks detected in mass spectrometry (Table S1); discussion of solid-state kinetic models; comparison of different solid-state kinetic models for fitting ESA and 40% ESO-based epoxy resins (Fig. S10 and Table S2) discussion of contracting volume model derivation; FTIR results of EVA and ESO curing reactions (Fig. S11); conversion of epoxy resins quantified through FTIR (Table S3). See DOI: 10.1039/c9py00240e)
Polymer Chemistry, ISSN 1759-9954, 01/2019, Volume 10, Issue 23, pp. 3217 - 3229
Journal Article
Book
Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 5/2017, Volume 128, Issue 2, pp. 1027 - 1037
Two different methods were used for preparation of novolac phenolic resin nanohybrids containing carbon nanotube and silica/siloxane moieties. Oxidized carbon... 
Polymer Sciences | Carbon nanotube | Chemistry | Analytical Chemistry | Measurement Science and Instrumentation | Physical Chemistry | Novolac phenolic resin | Inorganic Chemistry | Xerogel | Char residue
Journal Article
Polymers for Advanced Technologies, ISSN 1042-7147, 04/2018, Volume 29, Issue 4, pp. 1294 - 1302
For the sake of improving the flame retardancy of epoxy resin (EP), a novel phosphorus‐containing phenolic resin (PPR) synthesized in our group instead of... 
epoxy resin | curing agent | flame retardant | phosphorus‐containing phenolic resin | phosphorus-containing phenolic resin | THERMAL-STABILITY | POLYMERS | COMBUSTION | POLYMER SCIENCE | BEHAVIOR | THERMOSETS | CURED PRODUCTS | LINKAGE | Fireproofing agents | Epoxy resins | Curing agents | Mechanical properties | Flame retardants | Phosphorus | Crosslinking | Thermal analysis
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 05/2009, Volume 112, Issue 3, pp. 1762 - 1770
Journal Article
Microporous and Mesoporous Materials, ISSN 1387-1811, 02/2015, Volume 203, Issue C, pp. 116 - 122
To investigate the impact of thermal annealing on the micro- and macrostructure of amorphous carbons two series of synthetic disordered porous carbons (carbon... 
Amorphous porous carbon | Annealing | Microporosity | Nitrogen sorption | SAXS | Analysis | Methods | Boron nitride | Porosity
Journal Article
Applied Surface Science, ISSN 0169-4332, 01/2018, Volume 427, pp. 894 - 904
Journal Article
2010, 1. Aufl., ISBN 3642047130, 542
With global capacity in excess of 5 million tons annually, phenolic resins are one of the leading thermosetting resins that are used in many diverse industries... 
Industry & industrial studies | Phenolic resins | Industrial applications | Polymer Sciences | Condensed Matter Physics | Chemistry | Industrial Chemistry/Chemical Engineering | Safety in Chemistry, Dangerous Goods | Nanotechnology | Organic Chemistry
eBook
Chemistry of Materials, ISSN 0897-4756, 09/2006, Volume 18, Issue 18, pp. 4447 - 4464
The syntheses of a family of highly ordered mesoporous polymers and carbon frameworks from organic−organic assembly of triblock copolymers with soluble,... 
NANOPOROUS POLYMERS | BLOCK-COPOLYMERS | SILICA STRUCTURES | SURFACTANT | MATERIALS SCIENCE, MULTIDISCIPLINARY | PHENOLIC RESIN | TUNABLE PORE-SIZE | CHEMISTRY, PHYSICAL | NANOTUBES | ELECTROCHEMICAL STORAGE | MOLECULAR-SIEVES | PYROLYSIS
Journal Article
Polymer Degradation and Stability, ISSN 0141-3910, 08/2012, Volume 97, Issue 8, pp. 1527 - 1533
Fourier transform infrared spectroscopy was used to characterize the structure of phenol formaldehyde (PF) resin pyrolyzed at different temperatures, and... 
Fourier transform infrared spectroscopy | Pyrolysis gas chromatography mass spectrometry | Phenol formaldehyde | Pyrolysis mechanism | CARBONS | POLYMER SCIENCE | Pyrolysis | Methyl alcohol | Ethylene | Resins | Polymers | Carbon | Scission | Methylene
Journal Article