罗丹明红™ C2 马来酰亚胺
罗丹明红&trade; C<sub>2</sub> 马来酰亚胺
Invitrogen™

罗丹明红™ C2 马来酰亚胺

硫醇反应性 Rhodamine Red™ C2 马来酰亚胺可用于生成红色荧光生物偶联物,最大激发/发射波长 ∼560/580 nm了解更多信息
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货号数量
R6029
又称 R-6029
5 mg
货号 R6029
又称 R-6029
价格(CNY)
5,133.00
Each
添加至购物车
数量:
5 mg
价格(CNY)
5,133.00
Each
添加至购物车
硫醇反应性 Rhodamine Red™ C2 马来酰亚胺可用于生成红色荧光生物偶联物,最大激发/发射波长 ∼560/580 nm。
仅供科研使用。不可用于诊断程序。
规格
化学反应性硫醇
发射580
激发560
标签或染料罗丹明红™,罗丹明红™ C2 马来酰亚胺
产品类型马来酰亚胺
数量5 mg
反应一部分马来酰亚胺
运输条件室温
标签类型经典染料
产品线罗丹明红
Unit SizeEach
内容与储存
储存在冰箱(-5 至 -30°C)中并避光。

常见问题解答 (FAQ)

What is the excitation and emission wavelength for rhodamine?

Rhodamine is a generic term for a wide variety of cationic dyes whose fluorescence emission can range from green, orange to red. The table below lists the excitation and emission maxima (nm), as well as molar extinction coefficients (“EC”; cm-1 M-1), for various rhodamine dyes (data derived with dye dissolved in methanol).

Dye Excitation Emission EC
Rhodamine B 568 583 88,000
Rhodamine 123 507 529 101,000
Rhodamine 110 499 521 92,000
Rhodamine 6G 528 551 105,000
XRITC 572 596 92,000


Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

引用和文献 (4)

引用和文献
Abstract
A biosensor for inorganic phosphate using a rhodamine-labeled phosphate binding protein.
Authors:Okoh MP, Hunter JL, Corrie JE, Webb MR
Journal:Biochemistry
PubMed ID:17144669
'A novel biosensor for inorganic phosphate (Pi) has been developed based on the phosphate binding protein of Escherichia coli. Two cysteine mutations were introduced and labeled with 6-iodoacetamidotetramethylrhodamine. When physically close to each other and correctly oriented, two rhodamine dyes interact to form a noncovalent dimer. In this state, they ... More
Dependence of fluorescence intensity on the spectral overlap between fluorophores and plasmon resonant single silver nanoparticles.
Authors:Chen Y, Munechika K, Ginger DS
Journal:Nano Lett
PubMed ID:17315937
'We investigate the fluorescence from dyes coupled to individual DNA-functionalized metal nanoparticles. We use single-particle darkfield scattering and fluorescence microscopy to correlate the fluorescence intensity of the dyes with the localized surface plasmon resonance (LSPR) spectra of the individual metal nanoparticles to which they are attached. For each of three ... More
Filling the green gap of the major light-harvesting chlorophyll a/b complex by covalent attachment of Rhodamine Red.
Authors:Gundlach K, Werwie M, Wiegand S, Paulsen H,
Journal:Biochim Biophys Acta
PubMed ID:19619502
'The major light-harvesting chlorophyll a/b complex (LHCII) greatly enhances the efficiency of photosynthesis in green plants. Recombinant LHCII can be assembled in vitro from its denatured, bacterially expressed apoprotein and plant pigments. This makes it an interesting candidate for biomimetic light-harvesting in photovoltaic applications. Due to its almost 20 pigments ... More
Thiol-reactive dyes for fluorescence labeling of proteomic samples.
Authors:Tyagarajan K, Pretzer E, Wiktorowicz JE
Journal:Electrophoresis
PubMed ID:12874870
Covalent derivatization of proteins with fluorescent dyes prior to separation is increasingly used in proteomic research. This paper examines the properties of several commercially available iodoacetamide and maleimide dyes and discusses the conditions and caveats for their use in labeling of proteomic samples. The iodoacetamide dyes BODIPY TMR cadaverine IA ... More