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Sigma-Aldrich

Tetrahydrofuran-d8

≥99.5 atom % D, contains 0.03 % (v/v) TMS

Sinonimo/i:

THF-d8, Deuterated tetrahydrofuran, Octadeuterotetrahydrofuran

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About This Item

Formula empirica (notazione di Hill):
C4D8O
Numero CAS:
Peso molecolare:
80.16
Beilstein:
111854
Numero MDL:
Codice UNSPSC:
12142201
ID PubChem:
NACRES:
NA.21
Prezzi e disponibilità al momento non sono disponibili

Purezza isotopica

≥99.5 atom % D

Saggio

≥99% (CP)

Stato

liquid

contiene

0.03 % (v/v) TMS

tecniche

NMR: suitable

Impurezze

≤0.03% water
water

Indice di rifrazione

n20/D 1.403 (lit.)

P. ebollizione

65-66 °C (lit.)

Punto di fusione

−106 °C (lit.)

Densità

0.985 g/mL at 25 °C (lit.)

Spostamento di massa

M+8

Temperatura di conservazione

2-8°C

Stringa SMILE

[2H]C1([2H])OC([2H])([2H])C([2H])([2H])C1([2H])[2H]

InChI

1S/C4H8O/c1-2-4-5-3-1/h1-4H2/i1D2,2D2,3D2,4D2
WYURNTSHIVDZCO-SVYQBANQSA-N

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Descrizione generale

Tetrahydrofuran-d8 (THF-d8, TDF) is a deuterated NMR solvent containing 0.03% (v/v) TMS (tetramethylsilane). It is useful in NMR-based research and analyses. 1H NMR line shape analysis of the exchange rates of proton between methanol and acetic acid dissolved in THF-d8 was reported.[1] It participates as a solvent in the synthesis of deuteriotris[bis(trimethylsilyl)amido]thorium and deuteriotris[bis(trimethylsiiyl)amido]uranium.[2] Dynamic NMR spectroscopic study of 15N,15N′-dipentadeuterophenylformamidine (DPFA) has been studied in THF-d8.[3]

Applicazioni


  • Experimental and Theoretical Study of CO2 Insertion into Ruthenium Hydride Complexes.: This research provides insights into the mechanistic pathways for CO2 reactivity with ruthenium hydride complexes, potentially relevant for catalytic applications including transformations involving Tetrahydrofuran-d₈ (Ramakrishnan et al., 2016).


  • Syntheses, structures, and NMR chemical shifts of a family of trimethyltin alkoxide, amide, halide and cyclopentadienyl compounds.: Details the synthesis and structural characterization of trimethyltin compounds, useful for understanding the coordination chemistry that may involve Tetrahydrofuran-d₈ as a solvent or structural analogue (Lichtscheidl et al., 2015).

  • NMR studies of coupled low- and high-barrier hydrogen bonds in pyridoxal-5′-phosphate model systems in polar solution.: Discusses the application of NMR spectroscopy in studying hydrogen bonding interactions, where Tetrahydrofuran-d₈ could be utilized as a deuterated solvent for enhanced spectral clarity (Sharif et al., 2007).


  • Stable hydrocarbon diradical, an analogue of trimethylenemethane.: Investigates stable hydrocarbon diradicals, where Tetrahydrofuran-d₈ may be used as part of the experimental setup to stabilize reactive intermediates or as a solvent to study radical stability (Rajca et al., 2005).


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Avvertenze

Danger

Indicazioni di pericolo

Classi di pericolo

Acute Tox. 4 Oral - Carc. 2 - Eye Irrit. 2 - Flam. Liq. 2 - STOT SE 3

Organi bersaglio

Central nervous system, Respiratory system

Rischi supp

Codice della classe di stoccaggio

3 - Flammable liquids

Classe di pericolosità dell'acqua (WGK)

WGK 1

Punto d’infiammabilità (°F)

1.4 °F - closed cup

Punto d’infiammabilità (°C)

-17 °C - closed cup


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Slide 1 of 4

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Preparation and hydrogen-deuterium exchange of alkyl and hydride bis(trimethylsilyl) amido derivatives of the actinide elements.
Simpson SJ, et al.
Inorganic Chemistry, 20(9), 2991-2995 (1981)
NMR lineshape theory of superimposed intermolecular spin exchange reactions and its action to the system acetic acid/methanol/tetrahydrofuran-d8.
Limbach HH.
Journal of Magnetic Resonance, 36(3), 287-300 (1979)
Dynamic NMR study of the interference between cyclic proton exchange, selfassociation and hindered rotation of diphenylformamidine in tetrahydrofuran.
Meschede L, et al.
Berichte der Bunsengesellschaft fur physikalische Chemie, 92(4), 469-485 (1988)
Alejandro G Lichtscheidl et al.
Dalton transactions (Cambridge, England : 2003), 44(36), 16156-16163 (2015-08-22)
The synthesis and full characterization, including Nuclear Magnetic Resonance (NMR) data ((1)H, (13)C{(1)H} and (119)Sn{(1)H}), for a series of Me3SnX (X = O-2,6-(t)Bu2C6H3 (), (Me3Sn)N(2,6-(i)Pr2C6H3) (), NH-2,4,6-(t)Bu3C6H2 (), N(SiMe3)2 (), NEt2, C5Me5 (), Cl, Br, I, and SnMe3) compounds in

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    1. If this product has an expiration or retest date, it will be shown on the Certificate of Analysis (COA, CofA). If there is no retest or expiration date listed on the product's COA, we do not have suitable stability data to determine a shelf life. For these products, the only date on the COA will be the release date; a retest, expiration, or use-by-date will not be displayed.
      For all products, we recommend handling per defined conditions as printed in our product literature and website product descriptions. We recommend that products should be routinely inspected by customers to ensure they perform as expected.
      For products without retest or expiration dates, our standard warranty of 1 year from the date of shipment is applicable.
      For more information, please refer to the Product Dating Information document: https://www.sigmaaldrich.com/deepweb/assets/sigmaaldrich/marketing/global/documents/449/386/product-dating-information-mk.pdf

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    1. Products may be shipped at a different temperature than the recommended long-term storage temperature. If the product quality is sensitive to short-term exposure to conditions other than the recommended long-term storage, it will be shipped on wet or dry-ice. If the product quality is NOT affected by short-term exposure to conditions other than the recommended long-term storage, it will be shipped at ambient temperature. As shipping routes are configured for minimum transit times, shipping at ambient temperature helps control shipping costs for our customers. For more information, please refer to the Storage and Transport Conditions document: https://www.sigmaaldrich.com/deepweb/assets/sigmaaldrich/marketing/global/documents/316/622/storage-transport-conditions-mk.pdf

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