n-phenyl-(1,1′:4′,1”-terphenyl)-4-amine, a valuable building block in organic synthesis, exhibits unique structural features and reactivity that make it suitable for diverse chemical processes and material synthesis.
Triethylaminehydrobromide is an important salt compound with applications in organic synthesis, pharmaceuticals, and chemical reactions. It serves as a versatile reagent and phase-transfer catalyst due to its unique properties and compatibility with various reaction conditions.
N,N-bis(4-bromophenyl)biphenyl-4-amine, a valuable building block in organic synthesis, exhibits unique structural features and reactivity that make it suitable for diverse chemical processes and material synthesis.
[1,1'-Biphenyl]-4-amine,N-[1,1'-biphenyl]-4-yl-N-(4-bromophenyl)-, a valuable building block in organic synthesis, exhibits unique structural features and reactivity that make it suitable for diverse chemical processes and material synthesis.
Boc-Arg(Tos)-OH, also known as Nα-Boc-Nω-(p-toluenesulfonyl)-L-arginine, is a crucial intermediate in peptide synthesis and organic chemistry. With a molecular formula of C25H35N5O6S, this compound serves as a key building block for the creation of complex peptides and plays a vital role in pharmaceutical research and development due to its protective properties and stability.
Boc-Arg(NO2)-OH, also known as Nα-Boc-Nω-nitro-L-arginine, is a key compound in peptide synthesis and organic chemistry. With a molecular formula of C14H23N5O6, this chemical plays a crucial role as a building block for the creation of complex peptides and finds application in pharmaceutical research and development due to its unique properties.
Boc-D-Asn-ONp, also referred to as Nα-Boc-D-asparagine-4-nitrophenyl ester, is a crucial compound in peptide synthesis and organic chemistry. With a molecular formula of C15H18N2O7, this reagent serves as a key component for creating complex peptides and finds application in pharmaceutical research and development due to its unique properties.
Boc-Asn-OH, also known as Nα-Boc-L-asparagine, is a vital compound in peptide synthesis and organic chemistry. With a molecular formula of C11H19N3O6, this chemical serves as a key building block for creating complex peptides and finds application in pharmaceutical research and development due to its protective properties and stability.
Boc-D-Asn-OH, also known as Nα-Boc-D-asparagine, is a crucial compound in peptide synthesis and organic chemistry. With a molecular formula of C11H19N3O5, this chemical plays a pivotal role as a building block for the creation of complex peptides and finds application in pharmaceutical research and development due to its protective properties and stability.
Boc-Asn-ONp, also known as Nα-Boc-L-asparagine-4-nitrophenyl ester, is a vital compound in peptide synthesis and organic chemistry. With a molecular formula of C16H18N2O7, this chemical serves as a crucial reagent for the creation of complex peptides and finds application in pharmaceutical research and development due to its versatile properties.
Boc-Asp-OBzl, also known as Nα-Boc-L-aspartic acid α-benzyl ester, is a vital compound in peptide synthesis and organic chemistry. With a molecular formula of C17H19NO6, this reagent serves as a crucial building block for creating complex peptides and finds application in pharmaceutical research and development due to its protective properties and stability.
Boc-Asp(OBut)-ONp, also known as Nα-Boc-L-aspartic acid β-4-nitrophenyl ester, is a vital compound in peptide synthesis and organic chemistry. With a molecular formula of C18H23NO8, this reagent serves as a key intermediate for creating complex peptides and finds application in pharmaceutical research and development due to its versatile properties.