Alfa Chemistry Materials is specialized in material chemistry and offers an extensive catalog of materials in a wide range of applications, including Metals and Materials, 3D Printing Materials, Biomaterials.
Bis-MPA NHBOC-carboxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected amine focal point and an exact number of carboxylic acid surface groups. After deprotection, the amine focal point can be used for EDC/DCC coupling or coupling to NHS esters, while the carboxyl surface groups can be used for further coupling to amine containing materials, yielding highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 3708 g/mol (Theoretical). Purity: >95%.
Bis-MPA Rhodamine-Carboxyl dendrons are monodisperse, multifunctional scaffolds with 1 fluorescent rhodamine focal point and an exact number of carboxylic acid surface groups. The carboxyl surface groups can be used for further coupling to amine containing molecules, while the rhodamine focal point allows visualization and tracking of the final molecule in vitro. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA hydroxyl dendrimers are monodisperse, multifunctional scaffolds with an exact number of OH surface groups. The disulfide core can be readily reduced to yield a thiol focal point for further conjugation using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Mole weight: 386.48 g/mol. Purity: >95%.
Bis-MPA hydroxyl dendrimers are monodisperse, multifunctional scaffolds with an exact number of OH surface groups. The disulfide core can be readily reduced to yield a thiol focal point for further conjugation using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Mole weight: 850.49 g/mol. Purity: >95%.
Bis-MPA hydroxyl dendrimers are monodisperse, multifunctional scaffolds with an exact number of OH surface groups. The disulfide core can be readily reduced to yield a thiol focal point for further conjugation using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Mole weight: 1779.86 g/mol. Purity: >95%.
Bis-MPA hydroxyl dendrimers are monodisperse, multifunctional scaffolds with an exact number of OH surface groups. The disulfide core can be readily reduced to yield a thiol focal point for further conjugation using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Mole weight: 3637.71 g/mol. Purity: >95%.
Bis-MPA hydroxyl dendrimers are monodisperse, multifunctional scaffolds with an exact number of OH surface groups. The disulfide core can be readily reduced to yield a thiol focal point for further conjugation using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Mole weight: 7353.39 g/mol. Purity: >95%.
Bis-MPA Acetylene-OH dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of hydroxyl surface groups. The acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 172 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-OH dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of hydroxyl surface groups. The acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 404 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-OH dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of hydroxyl surface groups. The acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 869 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-OH dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of hydroxyl surface groups. The acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1798 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-OH dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of hydroxyl surface groups. The acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 3656 g/mol (Theoretical). Purity: >95%.
Bis-MPA azide-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected azide focal point and an exact number of hydroxyl surface groups. The azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 259 g/mol (Theoretical). Purity: >95%.
Bis-MPA azide-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected azide focal point and an exact number of hydroxyl surface groups. The azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 495.5 g/mol (Theoretical). Purity: >95%.
Bis-MPA azide-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected azide focal point and an exact number of hydroxyl surface groups. The azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 956 g/mol (Theoretical). Purity: >95%.
Bis-MPA azide-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected azide focal point and an exact number of hydroxyl surface groups. The azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1885 g/mol (Theoretical). Purity: >95%.
Bis-MPA azide-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected azide focal point and an exact number of hydroxyl surface groups. The azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 3743 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of hydroxyl surface groups. The carboxyl focal point can be used for conjugation to amine containing materials via EDC/DCC or coupling to NHS-esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 366 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of hydroxyl surface groups. The carboxyl focal point can be used for conjugation to amine containing materials via EDC/DCC or coupling to NHS-esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 831 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of hydroxyl surface groups. The carboxyl focal point can be used for conjugation to amine containing materials via EDC/DCC or coupling to NHS-esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1760 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of hydroxyl surface groups. The carboxyl focal point can be used for conjugation to amine containing materials via EDC/DCC or coupling to NHS-esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 3618 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected amine focal point and an exact number of OH surface groups. After deprotection, the amine focal point can be used for EDC/DCC coupling or coupling to NHS esters to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 482 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected amine focal point and an exact number of OH surface groups. After deprotection, the amine focal point can be used for EDC/DCC coupling or coupling to NHS esters to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 714 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected amine focal point and an exact number of OH surface groups. After deprotection, the amine focal point can be used for EDC/DCC coupling or coupling to NHS esters to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1178 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC-hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 protected amine focal point and an exact number of OH surface groups. After deprotection, the amine focal point can be used for EDC/DCC coupling or coupling to NHS esters to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 2107 g/mol (Theoretical). Purity: >95%.
Bis-MPA Thiol-Hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of hydroxyl surface groups. The thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 194 g/mol (Theoretical). Purity: >95%.
Bis-MPA Thiol-Hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of hydroxyl surface groups. The thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 427 g/mol (Theoretical). Purity: >95%.
Bis-MPA Thiol-Hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of hydroxyl surface groups. The thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 891 g/mol (Theoretical). Purity: >95%.
Bis-MPA Thiol-Hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of hydroxyl surface groups. The thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1820 g/mol (Theoretical). Purity: >95%.
Bis-MPA Thiol-Hydroxyl dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of hydroxyl surface groups. The thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 3678 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendrimer, Generation 1, TMP Core
Bis-MPA NHBoc dendrimers are monodisperse, multifunctional scaffolds with an exact number of protected amine surface groups. After deprotection, the amine functional dendrimers can be used for EDC/DCC coupling or coupling to NHS esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1510 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendrimer, Generation 2, TMP Core
Bis-MPA NHBoc dendrimers are monodisperse, multifunctional scaffolds with an exact number of protected amine surface groups. After deprotection, the amine functional dendrimers can be used for EDC/DCC coupling or coupling to NHS esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 3234 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendrimer, Generation 3, TMP Core
Bis-MPA NHBoc dendrimers are monodisperse, multifunctional scaffolds with an exact number of protected amine surface groups. After deprotection, the amine functional dendrimers can be used for EDC/DCC coupling or coupling to NHS esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 6681 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendrimer, Generation 4, TMP Core
Bis-MPA NHBoc dendrimers are monodisperse, multifunctional scaffolds with an exact number of protected amine surface groups. After deprotection, the amine functional dendrimers can be used for EDC/DCC coupling or coupling to NHS esters. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 13577 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling, to yield highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 514.57 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling, to yield highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1089.20 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling, to yield highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 2238.44 g/mol (Theoretical). Purity: >95%.
Bis-MPA Acetylene-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 alkyne focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the acetylene focal point can be used for click chemistry conjugation such as CuAAC and thiol-yne coupling, to yield highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 4536.94 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendron, Azide Core, Generation 1
Bis-MPA azide-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 azide focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 602 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendron, Azide Core, Generation 2
Bis-MPA azide-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 azide focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1176 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendron, Azide Core, Generation 3
Bis-MPA azide-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 azide focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 2326 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendron, Azide Core, Generation 4
Bis-MPA azide-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 azide focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the azide focal point can be used for click chemistry coupling reactions, such as CuAAC and SPAAC. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 4624 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendron, Biotin Core, Generation 1
Bis-MPA biotin-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 biotin focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the biotin focal point allows conjugation to proteins through biotinylation and binding to streptavidin or avidin. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA NHBoc Dendron, Biotin Core, Generation 2
Bis-MPA biotin-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 biotin focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the biotin focal point allows conjugation to proteins through biotinylation and binding to streptavidin or avidin. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA NHBoc Dendron, Biotin Core, Generation 3
Bis-MPA biotin-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 biotin focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the biotin focal point allows conjugation to proteins through biotinylation and binding to streptavidin or avidin. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA carboxyl-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC coupling to carboxyl containing substrates or coupling to NHS esters to form stable amide bonds with carboxyl functional substrates. Mole weight: 477 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC coupling to carboxyl containing substrates or coupling to NHS esters to form stable amide bonds with carboxyl functional substrates. Mole weight: 1051 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC coupling to carboxyl containing substrates or coupling to NHS esters to form stable amide bonds with carboxyl functional substrates. Mole weight: 2200 g/mol (Theoretical). Purity: >95%.
Bis-MPA carboxyl-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of protected amine surface groups. After deprotection, the amine surface groups can be used for EDC coupling to carboxyl containing substrates or coupling to NHS esters to form stable amide bonds with carboxyl functional substrates. Mole weight: 4499 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBoc Dendron, NHS Core, Generation 1
Bis-MPA NHS-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 NHS ester focal point and an exact number of protected amine surface groups. The NHS-ester focal point can be used to conjugation to amine functional molecules. After deprotection, the amine surface groups can be used for additional EDC/DCC coupling or coupling to NHS esters, generating bifunctional structures. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA NHBoc Dendron, NHS Core, Generation 2
Bis-MPA NHS-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 NHS ester focal point and an exact number of protected amine surface groups. The NHS-ester focal point can be used to conjugation to amine functional molecules. After deprotection, the amine surface groups can be used for additional EDC/DCC coupling or coupling to NHS esters, generating bifunctional structures. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA NHBoc Dendron, NHS Core, Generation 3
Bis-MPA NHS-NHBoc dendrons are monodisperse, multifunctional scaffolds with 1 NHS ester focal point and an exact number of protected amine surface groups. The NHS-ester focal point can be used to conjugation to amine functional molecules. After deprotection, the amine surface groups can be used for additional EDC/DCC coupling or coupling to NHS esters, generating bifunctional structures. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Bis-MPA NHBOC Dendron, Thiol Core, Generation 1
Bis-MPA Thiol-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of protected amine surface groups. After deprotection, the amine functional surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 537 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC Dendron, Thiol Core, Generation 2
Bis-MPA Thiol-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of protected amine surface groups. After deprotection, the amine functional surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 1111 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC Dendron, Thiol Core, Generation 3
Bis-MPA Thiol-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of protected amine surface groups. After deprotection, the amine functional surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 2261 g/mol (Theoretical). Purity: >95%.
Bis-MPA NHBOC Dendron, Thiol Core, Generation 4
Bis-MPA Thiol-NHBOC dendrons are monodisperse, multifunctional scaffolds with 1 thiol focal point and an exact number of protected amine surface groups. After deprotection, the amine functional surface groups can be used for EDC/DCC coupling or coupling to NHS esters, while the thiol focal point can be further conjugated using thiol-ene click, thiol-yne or thio-Michael addition to produce highly functional materials. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Mole weight: 4559 g/mol (Theoretical). Purity: >95%.
Bis-MPA RAFT dendrimers are monodisperse, multifunctional scaffolds with an exact number of RAFT agents at the periphery. This dendrimer contains 6 RAFT agent groups [4-Cyano-4-(thiobenzoylthio)pentanoic acid], allowing the synthesis of 6-arm star polymers via controlled radical polymerization of methacrylic monomers. Purity: >95%.
Bis-MPA Carboxyl-Rhodamine dendrons are monodisperse, multifunctional scaffolds with 1 carboxylic acid focal point and an exact number of fluorescent rhodamine surface groups. The carboxyl focal point can be used for further coupling to amine containing molecules, while the rhodamine surface groups allow visualization and tracking of the final molecule in vitro. Our bis-MPA polyester scaffolds are biodegrable and have low cytotoxicity, making them ideal candidates for use in biological research applications. Purity: >95%.
Polycarbonate resin combines strong impact properties with high transparency, making it useful for a wide variety of applications. Lightweight and highly processable, PC resin can be used for precision molding at a wide range of temperatures. CAS No. 59483-84-0. Molecular formula: C13F10O3. Mole weight: 394.12g/mol. IUPAC Name: bis(2,3,4,5,6-pentafluorophenyl) carbonate. SMILES: C1(=C(C(=C(C(=C1F)F)F)F)F)OC(=O)OC2=C(C(=C(C(=C2F)F)F)F)F. InChI: InChI=1S/C13F10O3/c14-1-3(16)7(20)11(8(21)4(1)17)25-13(24)26-12-9(22)5(18)2(15)6(19)10(12)23.
Bisphenol A
4,4'-isopropylidenediphenol appears as white to light brown flakes or powder. Has a weak medicine odor. Sinks in water. (USCG, 1999);DryPowder; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals;Solid;WHITE CRYSTALS FLAKES OR POWDER.;White to light brown flakes or powder with a weak medicinal odor. Reacts violently with acid anhydrides, acid chlorides, strong bases and strong oxidants. Molecular formula: C15H16O2;(CH3)2C(C6H4OH)2;C15H16O2. Mole weight: 228.29g/mol. IUPAC Name: 4-[2-(4-hydroxyphenyl)propan-2-yl]phenol. SMILES: CC(C)(C1=CC=C(C=C1)O)C2=CC=C(C=C2)O. InChI: InChI=1S/C15H16O2/c1-15(2,11-3-7-13(16)8-4-11)12-5-9-14(17)10-6-12/h3-10,16-17H,1-2H3.