2-(2-t-Boc-aminoethoxy)anisole-d3

Chemical Name 2-(2-t-Boc-aminoethoxy)anisole-d3
CAT No. CS-T-67928
CAS Registry# 1219179-77-7
Category Stable Isotopes
Stock Enquire
Mol. Wt. Not Available
Mol. For. Not Available
Hazardous This is not a Hazardous Compound
COA View Sample COA
MSDS View Sample MSDS
Smileys CC(C)(C)OC(=O)NCCOC1=CC=CC=C1OC
Canonical Smiles CC(C)(C)OC(=O)NCCOC1=CC=CC=C1OC
InchIKey RGFYUJKXCGVQDJ-GKOSEXJESA-N
Inchl InChI=1S/C14H21NO4/c1-14(2,3)19-13(16)15-9-10-18-12-8-6-5-7-11(12)17-4/h5-8H,9-10H2,1-4H3,(H,15,16)/i4D3
IUPAC tert-butyl N-[2-[2-(trideuteriomethoxy)phenoxy]ethyl]carbamate
Controlled No
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2-(2-t-Boc-aminoethoxy)anisole-d3, also known as Boc-AEEA-d3, is a deuterated derivative of 2-(2-t-Boc-aminoethoxy)anisole, which is a compound widely used in the synthesis of peptide and protein conjugates. Boc-AEEA-d3 is a labeled compound used in the analysis of peptide and protein structures, where it is used as a reference standard in mass spectrometry and nuclear magnetic resonance (NMR) spectroscopy. The compound has a molecular formula of C14H21D3NO5, and a molecular weight of 307.38 g/mol. Its chemical structure consists of a deuterated ethoxy group attached to an anisole ring, which is substituted with a tert-butoxycarbonyl (Boc) protected amino group. The Boc protecting group is commonly used in peptide synthesis to protect the amine group from unwanted reactions. Boc-AEEA-d3 is used as a stable isotope-labeled reference standard for mass spectrometry analysis, where it is used to quantify the amount of peptide and protein conjugates. It is also used in NMR spectroscopy for the determination of the three-dimensional structure of proteins and peptides. The deuterium labeling of the ethoxy group allows for differentiation between Boc-AEEA-d3 and non-deuterated Boc-AEEA, which can help in the identification and quantification of the labeled compound. In summary, Boc-AEEA-d3 is a useful reference standard in mass spectrometry and NMR spectroscopy for the analysis of peptide and protein structures. Its deuterium labeling allows for accurate quantification and differentiation from non-labeled compounds.

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