Cyanine3 NHS酯
目录号 | 数量 | 价格 | 提前通知时间 | 购买此产品 |
---|---|---|---|---|
11020 | 1 mg | $91 | 现货 | |
21020 | 5 mg | $119 | 现货 | |
41020 | 25 mg | $380 | 现货 | |
51020 | 50 mg |
$670
|
现货 | |
61020 | 100 mg |
$1150
|
现货 | |
81020 | 1 g | 请查询 | 12 天 |
![](https://static.lumiprobe.us/img/spectra/Cy3_absorbance_emission.gif)
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AF 568 NHS ester
AF 568 derivative for labeling proteins and other high- and low-molecular weight ligands with free amines.Cyanine7 NHS 酯 (Cyanine7 NHS ester)
近红外染料 Cyanine7 的胺反应活性 NHS 酯。Cyanine 5.5叠氮化物 (Cyanine5.5 azide)
用于点击化学的远红/近红外荧光 Cyanine5.5 染料衍生物。外观: | |
质谱 M+ 增量: | 439.5 |
分子量: | 641.5 |
CAS 编号: | 2632339-91-2 |
分子式: | C34H40N3BF4O4 |
IUPAC 名称: | 3H-Indolium, 2-[3-(1,3-dihydro-1,3,3-trimethyl-2H-indol-2-ylidene)-1-propen-1-yl]-1-[6-[(2,5-dioxo-1-pyrrolidinyl)oxy]-6-oxohexyl]-3,3-dimethyl-, tetrafluoroborate |
溶解度: | |
质量控制: | |
储存条件: | |
安全数据表(MSDS): | 下载 |
产品规格 |
激发/吸收极大值,纳米: | 555 |
ε, 摩尔吸光系数,cm⁻¹: | 150000 |
发射极大值,纳米: | 570 |
荧光量子产率: | 0.31 |
CF260: | 0.04 |
CF280: | 0.09 |
产品引用
- Oh, H.J.; Lee, Y.; Hwang, H.; Hong, K.; Choi, H.; Kang, J.Y.; Jung, Y. Size-controlled synthesis of phase separated protein condensates with interfacial protein cages. chemRxiv, 2024, preprint. doi: 10.26434/chemrxiv-2024-nkftl
- Deng, L.; Olea, A.R.; Ortiz‐Perez, A.; Sun, B.; Wang, J.; Pujals, S.; Palmans, A.R.A.; Albertazzi, L. Imaging Diffusion and Stability of Single‐Chain Polymeric Nanoparticles in a Multi‐Gel Tumor‐on‐a‐Chip Microfluidic Device. Small methods, 2024, 2301072. doi: 10.1002/smtd.202301072
- Feld, L. G.; Boehme, S. C.; Morad, V.; Sahin, Y.; Kaul, C. J.; Dirin, D. N.; Rainò, G.; Kovalenko, M. V. Quantifying Förster Resonance Energy Transfer from Single Perovskite Quantum Dots to Organic Dyes. ACS Nano, 2024, 18(14), 9997–10007. doi: 10.1021/acsnano.3c11359
- Maltseva, D.; Chatterjee, S.; Yu, C.-C.; Brzezinski, M.; Nagata, Y.; Gonella, G.; Murthy, A. C.; Stachowiak, J. C.; Fawzi, N. L.; Parekh, S. H.; Bonn, M. Fibril Formation and Ordering of Disordered FUS LC Driven by Hydrophobic Interactions. Nature Chemistry, 2023, 15(8), 1146–1154. doi: 10.1038/s41557-023-01221-1
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