所有图片(1)
About This Item
线性分子式:
K3Fe(CN)6
CAS号:
分子量:
329.24
EC 号:
MDL编号:
UNSPSC代码:
12171602
PubChem化学物质编号:
NACRES:
NA.25
方案:
≥99.0% (RT)
表单:
crystals
溶解性:
H2O: 1 M at 20 °C, clear, very strong brownish-yellow
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产品线
BioUltra
质量水平
方案
≥99.0% (RT)
表单
crystals
杂质
insoluble matter, passes filter test
pH值(酸碱度)
6-9 (25 °C, 1 M in H2O)
溶解性
H2O: 1 M at 20 °C, clear, very strong brownish-yellow
痕量阴离子
chloride (Cl-): ≤50 mg/kg
hexacyanoferrate(II) ([Fe(CN)6]4-): ≤200 mg/kg
sulfate (SO42-): ≤50 mg/kg
痕量阳离子
As: ≤0.1 mg/kg
Ca: ≤5 mg/kg
Cd: ≤5 mg/kg
Co: ≤50 mg/kg
Cr: ≤50 mg/kg
Cu: ≤10 mg/kg
Mg: ≤5 mg/kg
Mn: ≤5 mg/kg
Na: ≤200 mg/kg
Ni: ≤10 mg/kg
Pb: ≤20 mg/kg
Sr: ≤5 mg/kg
Zn: ≤5 mg/kg
吸附
no transmittance (UV) in H2O at 1 M
SMILES字符串
[K+].[K+].[K+].N#C[Fe-3](C#N)(C#N)(C#N)(C#N)C#N
InChI
1S/6CN.Fe.3K/c6*1-2;;;;/q;;;;;;-3;3*+1
InChI key
MIMJFNVDBPUTPB-UHFFFAOYSA-N
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相关类别
应用
在流动注射化学发光和激光诱导荧光等检测系统中,六氰合铁酸钾 (Ⅲ)(红普鲁士酸)可作为电子受体。
其他说明
电子受体,用于涉及电子传递的系统,例如 NADH-细胞色素 b 5 还原酶 ;复合物 I 的含量测定
警示用语:
Warning
危险声明
危险分类
Aquatic Chronic 2 - Eye Irrit. 2
补充剂危害
储存分类代码
13 - Non Combustible Solids
WGK
WGK 2
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves
Preparation and properties of NADH: ubiquinone oxidoreductase (complexI), EC 1.6.5.3.
Y Hatefi
Methods in enzymology, 53, 11-14 (1978-01-01)
Incorporation of microsomal electron-transfer components into liposomes: considerations for diffusion-limited reactions.
P Strittmatter et al.
Methods in enzymology, 52, 206-211 (1978-01-01)
Detergent-solubilized NADH-cytochrome b5 reductase.
K Mihara et al.
Methods in enzymology, 52, 102-108 (1978-01-01)
Soichiro Ijiri et al.
Journal of chromatography. A, 1217(18), 3161-3166 (2010-03-23)
Rhodamine 110 (Rho110) has been used in the highly sensitive analysis of monosaccharides, as it reacts with the reducing carbonyl group of the saccharides. The monosaccharide derivatives were investigated by capillary electrophoresis with laser-induced fluorescence detection. The derivatization was performed
Daehee Kim et al.
ChemSusChem, 5(6), 1086-1091 (2012-05-10)
To scale-up microbial fuel cells (MFCs), installing multiple unit cells in a common reactor has been proposed; however, there has been a serious potential drop when connecting unit cells in series. To determine the source of the loss, a basic
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