Catalog |
name |
Description |
price |
R-BSP-025 |
RhB-PCL-PEG-NHS |
Rhodamine B-polycaprolactone-poly(ethylene glycol-N-Hydroxysuccinimide,RhB-PCL-PEG-NHS from ruixi.RhB-PCL-PEG-NHS is a biofunctional amphiphilic block copolymer with N-Hydroxysuccinimidegroup at the end of PEG and Rhodamine B at the end of polycaprolactone. Rhodamine-PEG-succinimidyl ester (RhB-PEG-NHS) is a heterofunctional linker, which has active succinimidyl ester group on one end, and fluorescent probe (red) on the other end for labeling. NHS group can react with amine-containing groups. |
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R-BSP-026 |
ICG-PCL-PEG-FA |
Indocyanine Green-polycaprolactone-poly(ethylene glycol)-folate,ICG-PCL-PEG-FA from ruixi. ICG-PCL-PEG-FA is a biofunctional amphiphilic block copolymer with Indocyanine Green at the end of PEG and folate at the end of polycaprolactone. |
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R-PL-0041 |
NH2-PCL-PEG-HA |
Amine-polycaprolactone-poly(ethylene glycol)-Hyaluronate,NH2-PCL-PEG-HA from ruixi.NH2-PCL-PEG-HA is a biofunctional amphiphilic block copolymer with Hyaluronate at the end of PEG and Amine at the end of polycaprolactone. |
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R-PL-0049 |
PEG-b-PCL-b-PEG |
Polyethylene glycol-block-poly(ε-caprolactone)-block-Polyethylene glycol,PEG-b-PCL-b-PEG from ruixi.Amphiphilic Triblock Copolymer PEG-b-PCL-b-PEG .The nanoscale structures created from block copolymers could potentially be used for creating devices for use in computer memory, nanoscale-templating and nanoscale separations.Polyglutamic acid is a polymer of the amino acid glutamic acid. |
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R-PLM-0053 |
PMMA-b-PCL |
Poly(methyl methacrylate)-b-poly(ε-caprolactone),PMMA-b-PCL from ruxii.Amphiphilic copolymer block PMMA-b-PCL .The nanoscale structures created from block copolymers could potentially be used for creating devices for use in computer memory, nanoscale-templating and nanoscale separations.Polyglutamic acid is a polymer of the amino acid glutamic acid. |
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R-PL-0054 |
PAA-b-PCL |
Poly acrylic acid-b-poly(ε-caprolactone) PMMA-b-PLA PLA-b-PMMA from ruixi Amphiphilic copolymer block PAA-b-PCL .The nanoscale structures created from block copolymers could potentially be used for creating devices for use in computer memory, nanoscale-templating and nanoscale separations.Polyglutamic acid is a polymer of the amino acid glutamic acid. |
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R-PL-0061 |
PBd-b-PLLA |
Poly(butadiene(1,2 addition)-b-lactide) PBd-b-PLLA PLLA-b-PBd from ruixi Amphiphilic copolymer block PBd-b-PLLA..Biomass-derived poly (L-lactide acid)(PLLA) hasbeen intensively explored because it is biodegradable,compostable, producible from renewable resources,while at the same time nontoxic to human body and environment.The enhancement of crystallinity with theaid of a nucleating agent is commercially advantageousto improve the mechanical properties and thermal stability of PLLA. |
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R-BC-0043 |
PCL-b-PDMA-b-PNIPAAM |
Polycaprolactone-b-N,N-Dimethylacrylamide-b-b-POLY(N-ISOPROPYL ACRYLAMIDE,PCL-b-PDMA-b-PNIPAAM,PNIPAAM-b-PDMA-b-PCL from ruixi PCL-b-PDMA-b-PNIPAAM is an amphiphilic copolymer.The nanoscale structures created from block copolymers could potentially be used for creating devices for use in computer memory, nanoscale-templating and nanoscale separations.Polyglutamic acid is a polymer of the amino acid glutamic acid. |
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R-PL-0060 |
PBd-b-PCL |
Poly(butadiene(1,4 addition)-b-ε-caprolactone) ,PBd-b-PCL from ruxii.Amphiphilic block copolymer PBd-b-PCL .The nanoscale structures created from block copolymers could potentially be used for creating devices for use in computer memory, nanoscale-templating and nanoscale separations.Polyglutamic acid is a polymer of the amino acid glutamic acid. |
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R-PL-0062 |
PBd-b-PDLLA |
Poly(butadiene(1,2 addition)-b-D,Llactide) PBd-b-PDLLA PDLLA-b-PBd from ruixi Polylactides are a family of biodegradable and bioactive thermoplastic aliphatic polyester. It is used to fabricate resorbable medical devices that degrade over months in physiological conditions. Due to their history, polylactides are one of the easiest and most affordable biodegradable polymers for medical devices. PDLLA polymer is amorphous because the polymer composed randomly by the repeating units from L-lactic acid and D-lactic acid. Therefore, the polymer did not show melting point and has inferior mechanical properties than PLLA, so that the polymer is mainly applied for the coating of suture. |
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