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  • 42928-43-8 Structure
  • Basic information

    1. Product Name: B-tert-butyl-9-bbn
    2. Synonyms:
    3. CAS NO:42928-43-8
    4. Molecular Formula: C12H23B
    5. Molecular Weight: 178.12
    6. EINECS: N/A
    7. Product Categories: N/A
    8. Mol File: 42928-43-8.mol
  • Chemical Properties

    1. Melting Point: N/A
    2. Boiling Point: N/A
    3. Flash Point: N/A
    4. Appearance: N/A
    5. Density: N/A
    6. Refractive Index: N/A
    7. Storage Temp.: N/A
    8. Solubility: N/A
    9. CAS DataBase Reference: B-tert-butyl-9-bbn(CAS DataBase Reference)
    10. NIST Chemistry Reference: B-tert-butyl-9-bbn(42928-43-8)
    11. EPA Substance Registry System: B-tert-butyl-9-bbn(42928-43-8)
  • Safety Data

    1. Hazard Codes: N/A
    2. Statements: N/A
    3. Safety Statements: N/A
    4. WGK Germany:
    5. RTECS:
    6. HazardClass: N/A
    7. PackingGroup: N/A
    8. Hazardous Substances Data: 42928-43-8(Hazardous Substances Data)

42928-43-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 42928-43-8 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 4,2,9,2 and 8 respectively; the second part has 2 digits, 4 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 42928-43:
(7*4)+(6*2)+(5*9)+(4*2)+(3*8)+(2*4)+(1*3)=128
128 % 10 = 8
So 42928-43-8 is a valid CAS Registry Number.

42928-43-8Relevant articles and documents

New direct 11B NMR-based analysis of organoboranes through their potassium borohydrides

Medina, Jesus R.,Cruz, Gabriel,Cabrera, Carlos R.,Soderquist, John A.

, p. 4631 - 4642 (2007/10/03)

Representative organoborane mixtures were quantitatively converted to their borohydrides through their reaction with activated KH (KH*), permitting their detailed analysis by 11B NMR. Through the treatment of commercial KH with a THF solution of lithium aluminum hydride (LAH), a dramatic change in the surface morphology results as revealed by scanning electron microscopy (SEM). Energy dispersed spectroscopy (EDS) was employed to reveal that the LAH treatment deposits a significant amount of an unknown aluminum-containing species on the surface of the KH, which imparts a unique reactivity to the KH*. Even highly hindered organoboranes are quantitatively converted to their borohydrides by replacing electronegative groups (e.g., OR, halogen) with hydrogen, retaining only the carbon ligation. Through this simple KH* treatment, complex organoborane reaction mixtures are converted to the corresponding borohydrides whose 11B NMR spectra normally exhibit resolved signals for the individual species present. The integration of these signals provides quantitative information on the relative amounts of each component of the mixture. New generalities for the effect of α-, β-, and γ-substituents have also been determined that provide a new, simple technique for the determination of the isomeric distribution in organoborane mixtures resulting from common organoborane processes (e.g., hydroboration). Moreover, the 1H-coupled 11B NMR spectra of these mixtures reveal the extent of alkylation for each species present. Representative organoboranes were examined by this new technique permitting a simple and convenient quantitative analysis of the regio- and diastereomeric composition of a variety of asymmetric organoborane processes. Previously unknown details of pinene-based hydroborations and reductions are revealed for the first time employing the KH* 11B NMR technique.

A versatile synthesis of 9-BBN derivatives from organometallic reagents and 9-(triisopropylsilyl)thio-9-borabicyclo[3.3.1]nonane

Soderquist, John A.,Justo De Pomar, Jorge C.

, p. 3537 - 3539 (2007/10/03)

Representative B-substituted-9-BBNs (3) are efficiently prepared from either organolithium or Grignard reagents through their addition to (TIPS)S- 9-BBN (1) which is readily available from TIPSSH and 9-BBN-H. The thermally induced collapse of the intermediate 'ate' complexes (2) produces 3 which is easily isolated in good yield and high purity. (C) 2000 Elsevier Science Ltd.

Solid-phase synthesis of unnatural α-amino acid derivatives using a resin-bound glycine cation equivalent

O'Donnell, Martin J.,Delgado, Francisca,Drew, Mark D.,Pottorf, Richard S.,Zhou, Changyou,Scott, William L.

, p. 5831 - 5835 (2007/10/03)

Unnatural amino acids were synthesized on solid-phase by reaction of a resin-bound Schiff base with organoboranes. This novel use of a resin-bound glycine cation equivalent allows for the preparation of a variety of amino acid structural types not readily available by the complementary anionic equivalent.

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