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Styrene-[d8]

General Information
Catalog: BLP-010076
CAS: 19361-62-7
Molecular Formula: C8D8
Molecular Weight: 112.20
Chemical Structure
Styrene-[d8]
Description Styrene-[d8] is a labelled compound of Styrene.
Synonyms Ethenylbenzene-d8; Cinnamene-d8; Maomin SM-d8; NSC 62785-d8; Perdeuterated Styrene; Perdeuteriostyrene;Phenethylene-d8; Phenylethene-d8; Phenylethylene-d8; Styrol-d8; Styrole-d8; Styrolene-d8; Styropol SO-d8; TTB 7302-d8; Vinylbenzene-d8; Vinylbenzol-d8
IUPAC Name 1,2,3,4,5-pentadeuterio-6-(1,2,2-trideuterioethenyl)benzene
Related CAS 100-42-5 (unlabelled)
Isomeric SMILES [2H]C1=C(C(=C(C(=C1[2H])[2H])C(=C([2H])[2H])[2H])[2H])[2H]
Canonical SMILES C=CC1=CC=CC=C1
InChI InChI=1S/C8H8/c1-2-8-6-4-3-5-7-8/h2-7H,1H2/i1D2,2D,3D,4D,5D,6D,7D
InChI Key PPBRXRYQALVLMV-GDALLCCDSA-N
Boiling Point 145-146°C (lit.)
Melting Point -31°C
Purity ≥98% by CP; ≥98% atom D
Density 0.979 g/mL at 25°C (lit.)
Appearance Clear Colorless Oil
Storage Store at -20°C

Styrene-[d8], a deuterated variant of styrene, plays a significant role in various scientific pursuits. Here are key applications of Styrene-[d8] articulated with a high degree of perplexity and burstiness:

Nuclear Magnetic Resonance (NMR) Spectroscopy: Embraced in NMR spectroscopy, Styrene-[d8] serves as a solvent or reference material crucial for researchers aiming to study chemical structures and dynamics. Its deuterated composition effectively diminishes background signals in the hydrogen spectrum, elevating measurement precision. This renders Styrene-[d8] an invaluable asset for delving into the intricacies of molecular behavior using NMR techniques.

Polymer Research: In the realm of polymer science, Styrene-[d8] finds utility in fabricating deuterium-labeled polymers, aiding in the comprehension of polymerization mechanisms and structural analysis. By incorporating deuterated styrene, scientists can meticulously monitor the integration of specific monomers during polymer synthesis. This enables detailed investigations into polymer characteristics and behaviors, like chain dynamics and solubility, shedding light on fundamental polymer properties.

Environmental Studies: Within environmental research circles, Styrene-[d8] emerges as a vital tracer for investigating the distribution and movement of styrene in diverse ecosystems. Its deuterium-enriched form distinguishes it from naturally occurring styrene, facilitating the tracking of its dispersal and degradation pathways. This application plays a pivotal role in assessing the environmental repercussions of styrene and its derivatives, contributing to a comprehensive understanding of their ecological impact.

Chemical Kinetics: Engaging in chemical kinetics inquiries, Styrene-[d8] is a key protagonist in unraveling reaction mechanisms and rates. With its isotopic labeling, researchers can trace specific reaction pathways and discern kinetic isotope effects, unveiling the dynamics of chemical transformations. This investigative approach not only elucidates reaction kinetics but also holds promise for advancing catalytic processes through enhanced understanding of reaction dynamics.

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