VTMR20-010V Series Variable-Temperature NMR Relaxometer

VTMR20-010V、VTMR20-010V-I The variable-temperature NMR analyser integrates T₁ and T₂ relaxation time measurements with magnetic resonance imaging (MRI) technology. Combined with an in-line variable-temperature module and the advanced FLAT technology developed for capturing weak signals with short relaxation times, it delivers a comprehensive range of solutions. The system enables rapid, non-destructive analysis of samples in diverse states—solutions, gels, solids, and particulates—making it particularly suitable for process monitoring, workflow optimisation, formulation studies, and the evaluation of ageing and curing in real-time experimental research.

 

 

 

Macroscale Samples

 

Measure samples from millimetre to decimetre scale

 

 

Microscopic Features

 

Characterise molecular-scale dynamics in your samples

 

 

Statistical Readout

 

Capture all hydrogen-proton signals within the region of interest

 

 

Fast & Non-destructive

 

Achieve rapid screening—in seconds to minutes—without damaging samples

 
 
 
 
 

 

Key Specifications

 

Models: VTMR20-010V, VTMR20-010V-I

Magnet Type: Permanent magnet

Magnetic Field Strength: 0.5 ± 0.05 T

Sample Temperature Control: Ambient to 130 °C (standard)

Advanced VT Module: −100 °C to 200 °C (optional)

Imaging capability (optional)

 

Product Highlights

 

Complete tests in ~2 minutes with high sensitivity

Inline, non-destructive, and rapid measurement

Reagent-free and fully repeatable experiments

Ideal for rubbers, elastomers, and inorganic materials

 
 
 

Applications

 

 
 

1. Quantitative Measurements

 

  • Crosslink density and bound-rubber content
  • Hard/soft segment ratio
  • Fluorine content testing

2. Performance Evaluation

 

  • Particle dispersion and stability studies
  • Competitive adsorption assessment
  • Hydrophilicity/hydrophobicity characterization

3. NMR Imaging

 

  • Homogeneity studies of rubbers and polymers
  • Detection of internal structural defects

4. Customisable Temperature & More

 

  • Inline monitoring of vulcanisation, curing, and ageing of elastomeric materials
  • Evaluate interactions between materials and liquids
 

 

Published Papers:
《Bio-Based Polyurethane and Its Composites towards High Damping Properties》
《Enhanced electromechanical performance of natural rubber dielectric elastomers achieved by in situ synthesis of silver nanoparticles on TiO2 nanoparticles》
《Design Strategy for Vulcanization Accelerator of Diphenylguanidine/Cyclodextrin Inclusion Complex for Natural Rubber Latex Foam with Enhancing…》
《Tailoring tetrahedral and pair-correlation entropies of glass-forming liquids for energy storage applications at ultralow temperatures》
《Monodentate Acetate Anion Enhanced Hydrogel Electrolyte for Long-Term Lifespan Zn-Air Batteries》
《Strong Underwater Supramolecular Adhesives via Fluorinated Ionic Liquids》
《Long-stable lithium metal batteries with a high performance dual-salt solid polymer electrolyte》
《Trap Distribution and Along-Surface Discharge Characterization of Aromatic Compound-Modified Silicone Gel》
《An elastic piezoelectric nanomembrane with double noise reduction for high-quality bandpass acoustics》
《Improving the ablative properties of silicone rubber by adding aluminum foil_expanded perlite》
《Antibacterial GO@SiO2 nanofluids/natural rubber composite films with and simultaneously enhanced mechanical strength and elongation at break: A new strategy beyond nanofillers》
《Compressible, anti-fatigue, extreme environment adaptable, and biocompatible supramolecular organohydrogel enabled by lignosulfonate triggered noncovalent network》
《Water-driven dynamic dual-network structure enables hydroplastic polymers with ultrahigh strength and tunable performance》
《A hyperelastic hydrogel with an ultralarge reversible biaxial strain》
《 Making Sticky-Slippery Switchable Fluorogels Through Self-Adaptive Bicontinuous Phase Separation》
《Compliant thermal interface materials via introducing pendent chains into polymer networks for chip cooling》
《Engineer Nanoscale Defects into Selective Channels: MOF-Enhanced Li+ Separation by Porous Layered Double Hydroxide Membrane》
《Modulating the Coordination Environment of Lithium Bonds for High Performance Polymer Electrolyte Batteries》

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