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CAS:181934-09-8 | Cy7.5 Acid(mono SO3)

CAS:181934-09-8 | Cy7.5 Acid(mono SO3)

Introduction of CAS:181934-09-8 | Cy7.5 Acid(mono SO3) The compound"4-(2-(7-(3-(5-Carboxypentyl)-1,1-dimethyl-1,3-dihydro-2H-benzo[e]indol-2-ylidene)hepta-1,3,5-trien-1-yl)-1,1-dimethyl-1H-benzo[e]indol-3-ium-3-yl)butane-1-sulfonate" is a complex organic molecule . It is part of the indole...

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Introduction of CAS:181934-09-8 | Cy7.5 Acid(mono SO3)

 

The compound"4-(2-(7-(3-(5-Carboxypentyl)-1,1-dimethyl-1,3-dihydro-2H-benzo[e]indol-2-ylidene)hepta-1,3,5-trien-1-yl)-1,1-dimethyl-1H-benzo[e]indol-3-ium-3-yl)butane-1-sulfonate" is a complex organic molecule . It is part of the indole derivatives family, which has been studied for their biological potential .

 

Specification of CAS:181934-09-8 | Cy7.5 Acid(mono SO3)

 

ITEMS

SPECIFICATION

Color

Brown to black

Purity

97%

Molecular Weight

730.96

Form

Solid

 

Research Application of CAS:181934-09-8 | Cy7.5 Acid(mono SO3)

Applications in Solar Cell Technology

One significant application of the compound is in the field of solar cell technology. Carboxylated cyanine dyes, which share structural similarities with the compound , have been studied for their potential in improving the photoelectric conversion efficiency of dye-sensitized solar cells. The co-sensitization of these dyes has shown promising results in enhancing the photoelectrical properties of the solar cells, indicating a potential area of application for similar compounds (Wu et al., 2009).

Aggregation and Optical Properties

The aggregation behavior of similar Indocyanine dyes has been a subject of interest, particularly in the context of their optical properties. Studies reveal the formation of typical H-aggregates at moderate concentrations and the structural transformation between strongly to weakly coupled H-type aggregates under certain conditions. These properties are crucial for applications involving optical sensors or devices (v Berlepsch & Böttcher, 2015).

Cancer Detection and Imaging

Another profound application is in the field of cancer detection and imaging. A structurally related water-soluble dye has shown potential in optical imaging for cancer detection. The enhanced quantum yield and the stability of the dye for bioconjugation make it a potent candidate for developing molecular-based beacons for identifying cancer cells (Pham, Medarova, & Moore, 2005).

pH Sensing in Extreme Conditions

The compound's potential applications also extend to pH sensing, especially under extreme conditions. Related water-soluble indolium-based fluorescence probes have demonstrated their efficacy in detecting extreme acidity or alkalinity. Their reversible, selective, and stable pH sensing capabilities in aqueous systems mark their importance in environments where pH plays a critical role (Li et al., 2019).

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