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Copper(II)-TBTA complex
貨號 | 數量 | 價格 | 交貨時間 | 購買此產品 |
---|---|---|---|---|
21050 | 1.5 mL | $75 | 現貨 |
A component of our recommended catalyst for conjugating azides with alkynes using a copper-catalyzed click reaction. This inactive complex is stable and contains divalent copper(II) as 10 mM CuSO4 in 55% aqueous DMSO.
When Cu(II)-TBTA is treated with reducing agents, such as ascorbic acid, a catalytically active complex with monovalent copper (I) is formed.
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Alkyne dT phosphoramidite
Phosphoramidite modifier for the synthesis of oligonucleotides containing alkyne modification in the middle of the chain.
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Cyanine5亞磷酰胺 (Cyanine5 phosphoramidite)
Cyanine5 亞磷酰胺衍生物,用於寡核苷酸合成
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TFA-amino modifier CPG 500
TFA-amino modifier CPG for oligo synthesis. 500 Å, high load controlled pore glass.General properties
Appearance: | blue solution |
Molecular weight: | 690.23 |
Molecular formula: | C30H30CuN10O4S |
Quality control: | functional testing (click chemistry) |
Storage conditions: | Storage: 24 months after receival at -20°C in the dark. Transportation: at room temperature for up to 3 weeks. |
MSDS: | 下載 |
產品規格 |
產品引用
- Haugen, R.J.; Barnier, C.; Elrod, N.D.; Luo, H.; Jensen, M.K.; Ji, P.; Smibert, C.A.; Lipshitz, H.D.; Wagner, E.J.; Lydia Freddolino, P.; Goldstrohm, A.C. Regulation of the Drosophila transcriptome by Pumilio and CCR4-NOT deadenylase. bioRxiv, 2023. doi: 10.1101/2023.08.29.555372
- Kropacheva, N. O.; Golyshkin, A. A.; Vorobyeva, M. A.; Meschaninova, M. I. Convenient Solid-Phase Attachment of Small-Molecule Ligands to Oligonucleotides via a Biodegradable Acid-Labile P-N-Bond. Molecules, 2023, 28(4), 1904. doi: 10.3390/molecules28041904
- Novopashina, D. S.; Dymova, M. A.; Davydova, A. S.; Meschaninova, M. I.; Malysheva, D. O.; Kuligina, E. V.; Richter, V. A.; Kolesnikov, I. A.; Taskaev, S. Y.; Vorobyeva, M. A. Aptamers for Addressed Boron Delivery in BNCT: Effect of Boron Cluster Attachment Site on Functional Activity. International Journal of Molecular Sciences, 2023, 24(1), 306. doi: 10.3390/ijms24010306
- De Prisco, N.; Ford, C.; Elrod, N. D.; Lee, W.; Tang, L. C.; Huang, K.-L.; Lin, A.; Ji, P.; Jonnakuti, V. S.; Boyle, L.; Cabaj, M.; Botta, S.; Õunap, K.; Reinson, K.; Wojcik, M. H.; Rosenfeld, J. A.; Bi, W.; Tveten, K.; Prescott, T.; Gerstner, T.; Schroeder, A.; Fong, C.-T.; George-Abraham, J. K.; Buchanan, C. A.; Hanson-Khan, A.; Bernstein, J. A.; Nella, A. A.; Chung, W. K.; Brandt, V.; Jovanovic, M.; Targoff, K. L.; Yalamanchili, H. K.; Wagner, E. J.; Gennarino, V. A. Alternative Polyadenylation Alters Protein Dosage by Switching between Intronic and 3′UTR Sites. Sci. Adv., 2023, 9(7), eade4814. doi: 10.1126/sciadv.ade4814
Product is offered and sold for research purposes only. Product is not tested for safety and efficacy in food, drug, medical device, cosmetic, no express or implied authorization to use for any other purpose, including, without limitation, in vitro diagnostic purposes, for humans or animals or for commercial purposes.
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