Items 11 to 17 of 17 total
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
CruzFluor™ 750 succinimidyl ester | sc-362623 | 1 mg | $195.00 | |||
CruzFluor™ 750 succinimidyl ester is a specialized compound characterized by its exceptional infrared fluorescence beyond 750 nm. This ester features a highly reactive succinimidyl group, facilitating efficient amine labeling through nucleophilic attack. Its unique steric configuration enhances binding specificity, while the extended conjugated system allows for superior light absorption. The compound's stability under various conditions ensures reliable performance in diverse experimental setups, making it a noteworthy choice for advanced applications. | ||||||
CruzQuench™ 7 alkyne | sc-362676 | 1 mg | $295.00 | |||
CruzQuench™ 7 alkyne is a distinctive compound known for its remarkable infrared quenching properties beyond 750 nm. This alkyne features a unique electronic structure that promotes efficient energy transfer, leading to effective signal suppression in complex environments. Its robust molecular interactions enable precise modulation of fluorescence, while its stability under varying conditions ensures consistent performance. The compound's distinct reactivity pathways further enhance its utility in advanced analytical applications. | ||||||
CruzQuench™ 7 azide | sc-362678 | 1 mg | $295.00 | |||
CruzQuench™ 7 azide is a specialized compound characterized by its exceptional infrared quenching capabilities exceeding 750 nm. This azide exhibits unique molecular interactions that facilitate selective energy dissipation, allowing for enhanced signal attenuation in diverse settings. Its distinctive reaction kinetics enable rapid engagement with target molecules, while its physical properties contribute to reliable performance across a range of experimental conditions. The compound's tailored reactivity pathways further optimize its effectiveness in intricate analytical frameworks. | ||||||
CruzQuench™ 7 maleimide | sc-362680 | 1 mg | $295.00 | |||
CruzQuench™ 7 maleimide is a specialized compound known for its remarkable infrared quenching properties beyond 750 nm. This maleimide engages in specific molecular interactions that promote efficient energy transfer, enhancing quenching efficiency. Its unique reactivity allows for selective conjugation with thiol groups, facilitating targeted modifications. The compound's stability and compatibility with various environments ensure consistent performance, making it a versatile tool in advanced analytical applications. | ||||||
CruzQuench™ 7 succinimidyl ester | sc-362682 | 5 mg | $295.00 | |||
CruzQuench™ 7 succinimidyl ester is a distinctive compound characterized by its exceptional infrared quenching capabilities exceeding 750 nm. This ester exhibits a high reactivity towards amine groups, enabling precise conjugation and facilitating the formation of stable linkages. Its unique molecular structure promotes rapid reaction kinetics, enhancing the efficiency of energy transfer processes. Additionally, the compound's robust stability under diverse conditions ensures reliable performance in various experimental setups. | ||||||
Phalloidin CruzFluor™ 790 Conjugate | sc-363801 | 300 tests | $307.00 | |||
Phalloidin CruzFluor™ 790 Conjugate is a specialized fluorescent probe that exhibits strong binding affinity for F-actin, allowing for precise visualization of cytoskeletal structures. Its unique conjugation to a fluorophore enables effective excitation beyond 750 nm, facilitating deep tissue imaging. The compound's stability and low photobleaching rates enhance signal retention, while its specific interaction with actin filaments provides insights into cellular dynamics and morphology. | ||||||
CruzFluor sm™ 8 azide | sc-394026 | 1 mg | $244.00 | 2 | ||
CruzFluor sm™ 8 azide is a distinctive chemical that exhibits remarkable photophysical properties, particularly in the infrared spectrum beyond 750 nm. Its unique azide functional group facilitates specific molecular interactions, enabling selective reactivity in click chemistry applications. The compound's stability under various conditions and its ability to undergo rapid reaction kinetics make it an intriguing candidate for exploring novel pathways in material science and bioconjugation, enhancing the versatility of infrared imaging techniques. | ||||||