Items 1 to 10 of 72 total
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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9-Anthryldiazomethane | 10401-59-9 | sc-214434 | 25 mg | $326.00 | 2 | |
9-Anthryldiazomethane exhibits remarkable photochemical behavior when excited within the 380-450 nm range, characterized by its anthracene core that facilitates efficient singlet fission. This compound's unique conjugated system promotes strong π-stacking interactions, enhancing its luminescent properties. The diazo group introduces distinct reactivity patterns, allowing for rapid cycloaddition reactions. Its ability to undergo energy transfer processes further distinguishes its kinetic behavior in diverse chemical settings. | ||||||
Phalloidin CruzFluor™ 405 Conjugate | sc-363790 | 300 tests | $196.00 | 4 | ||
Phalloidin CruzFluor™ 405 Conjugate is a potent fluorescent probe that selectively binds to F-actin, enabling precise visualization of cytoskeletal structures. Its unique conjugation with CruzFluor™ 405 enhances fluorescence intensity and stability, making it ideal for high-resolution imaging. The compound exhibits strong affinity for actin filaments, promoting effective labeling and facilitating dynamic studies of cellular architecture and motility. Its distinct emission profile within the 380-450 nm range allows for compatibility with various imaging techniques. | ||||||
Lucigenin | 2315-97-1 | sc-202698 sc-202698A sc-202698B sc-202698C | 10 mg 50 mg 500 mg 1 g | $29.00 $53.00 $175.00 $302.00 | 17 | |
Lucigenin is a luminescent compound that exhibits unique photophysical properties, particularly in the 380-450 nm emission range. It interacts with reactive oxygen species, facilitating electron transfer processes that enhance its fluorescence. This compound is known for its ability to form stable complexes with metal ions, influencing reaction kinetics and enabling the study of redox reactions. Its distinct spectral characteristics make it a valuable tool for probing molecular interactions in various environments. | ||||||
N,N,N-Trimethyl-4-(6-phenyl-1,3,5-hexatrien-1-yl)phenylammonium p-toluenesulfonate | 115534-33-3 | sc-215501 | 5 mg | $120.00 | 5 | |
N,N,N-Trimethyl-4-(6-phenyl-1,3,5-hexatrien-1-yl)phenylammonium p-toluenesulfonate is a vibrant luminescent compound that exhibits remarkable photostability and a strong emission profile in the 380-450 nm range. Its unique structure allows for effective π-π stacking interactions, enhancing its fluorescence efficiency. The compound's ability to undergo intramolecular charge transfer contributes to its distinct optical properties, making it an intriguing subject for studies on molecular dynamics and energy transfer mechanisms. | ||||||
True Blue Chloride | 71431-30-6 | sc-216026 | 5 mg | $435.00 | 2 | |
True Blue Chloride is a striking compound characterized by its intense luminescence within the 380-450 nm spectrum. Its unique electronic configuration facilitates rapid electron transfer processes, leading to enhanced photonic responses. The compound exhibits strong dipole-dipole interactions, which contribute to its stability and reactivity. Additionally, its ability to form stable complexes with various substrates allows for intriguing studies on molecular aggregation and energy migration pathways. | ||||||
MeOSuc-AAPV-AMC | 72252-90-5 | sc-201163 | 5 mg | $153.00 | 19 | |
MeOSuc-AAPV-AMC is a distinctive compound known for its remarkable fluorescence in the 380-450 nm range. Its structure promotes efficient energy transfer, enabling swift excitation and emission processes. The presence of specific functional groups enhances its reactivity, allowing for selective interactions with nucleophiles. This compound also demonstrates unique solubility characteristics, influencing its behavior in various environments and facilitating diverse experimental applications. | ||||||
CruzFluor™ 405 succinimidyl ester | sc-362616 sc-362616A | 1 mg 5 mg | $403.00 $974.00 | |||
CruzFluor™ 405 succinimidyl ester exhibits exceptional fluorescence within the 380-450 nm spectrum, characterized by its robust photostability and high quantum yield. Its unique succinimidyl ester moiety facilitates rapid conjugation with amines, promoting efficient labeling in complex biological systems. The compound's hydrophilic nature enhances solubility in aqueous environments, while its reactive sites enable targeted interactions, making it a versatile tool for probing molecular dynamics. | ||||||
4-Methylumbelliferyl β-D-glucuronide | 6160-80-1 | sc-280452 sc-280452A sc-280452B | 2 g 20 g 50 g | $316.00 $444.00 $877.00 | 1 | |
4-Methylumbelliferyl β-D-glucuronide is a fluorescent compound that emits light in the 380-450 nm range, showcasing remarkable sensitivity to enzymatic hydrolysis. Its β-D-glucuronide structure allows for specific interactions with glucuronidase enzymes, leading to a distinct fluorescence increase upon cleavage. This property enables real-time monitoring of enzymatic activity, while its stable structure ensures consistent performance in various experimental conditions, making it a valuable probe for studying biochemical pathways. | ||||||
4-Methylumbelliferyl-β-D-glucopyranoside | 18997-57-4 | sc-280455 sc-280455A sc-280455B sc-280455C | 1 g 5 g 25 g 100 g | $153.00 $265.00 $459.00 $1758.00 | ||
4-Methylumbelliferyl-β-D-glucopyranoside is a fluorescent substrate that exhibits emission in the 380-450 nm range, characterized by its unique interaction with glycosidases. Upon enzymatic cleavage, it undergoes a significant increase in fluorescence, facilitating the observation of glycosylation processes. Its robust molecular framework allows for reliable detection in diverse environments, making it an effective tool for investigating carbohydrate metabolism and enzyme kinetics. | ||||||
Phalloidin CruzFluor™ 350 Conjugate | sc-363789 | 300 tests | $182.00 | 1 | ||
Phalloidin CruzFluor™ 350 Conjugate is a highly specific fluorescent probe that binds to F-actin filaments, emitting light in the 380-450 nm range. Its unique affinity for polymerized actin allows for precise visualization of cytoskeletal structures. The conjugate enhances signal intensity, enabling detailed studies of cellular dynamics and morphology. Its stability and low background fluorescence make it ideal for high-resolution imaging in various biological contexts. |