Merck

85193

Sigma-Aldrich

硝酸银 溶液

2.5 % (w/v) AgNO3 in H2O

Empirical Formula (Hill Notation):
AgNO3
CAS号:
分子量:
169.87
MDL编号:
PubChem化学物质编号:
NACRES:
NA.47

形式

liquid

质量水平

浓度

2.5 % (w/v) AgNO3 in H2O

application(s)

diagnostic assay manufacturing
hematology
histology

储存温度

2-8°C

SMILES string

[Ag]

InChI

1S/Ag.NO3/c;2-1(3)4/q+1;-1

InChI key

SQGYOTSLMSWVJD-UHFFFAOYSA-N

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此商品
916404S8157204390
Silver nitrate solution 2.5 % (w/v) AgNO3 in H2O

Sigma-Aldrich

85193

硝酸银 溶液

Silver nitrate 99.995% trace metals basis

Sigma-Aldrich

916404

硝酸银

Silver nitrate BioXtra, >99% (titration)

Sigma-Aldrich

S8157

硝酸银

Silver nitrate 99.9999% trace metals basis

Sigma-Aldrich

204390

硝酸银

concentration

2.5 % (w/v) AgNO3 in H2O

concentration

-

concentration

-

concentration

-

application(s)

diagnostic assay manufacturing
hematology
histology

application(s)

-

application(s)

-

application(s)

-

storage temp.

2-8°C

storage temp.

-

storage temp.

-

storage temp.

-

一般描述

硝酸银和碘是几种用于在显微制剂中诱导颜色的无机物。硝酸银作为一种生物染色剂,利用了胶体金属银的强烈颜色。 硝酸银是银染色的重要成分,用于检测聚丙烯酰胺凝胶电泳分离的蛋白质。

应用

硝酸银是银染试剂盒的一种成分。它是在二胺和非二胺银染色中进行图像显影所必需的。

生化/生理作用

在银染色中,银离子被还原为金属银,从而产生金属银图像。

象形图

CorrosionEnvironment

警示用语:

Warning

危险分类

Aquatic Acute 1 - Aquatic Chronic 1 - Eye Irrit. 2 - Met. Corr. 1 - Skin Irrit. 2

储存分类代码

8B - Non-combustible, corrosive hazardous materials

WGK

WGK 3

闪点(F)

Not applicable

闪点(C)

Not applicable

个人防护装备

Faceshields, Gloves, Goggles


Certificates of Analysis (COA)

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示例

T1503
货号
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25G
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1000309185

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Slide 1 of 5

1 of 5

Silver nitrate 99.9999% trace metals basis

Sigma-Aldrich

204390

硝酸银

Silver nitrate BioReagent, suitable for plant cell culture, >99% (titration)

Sigma-Aldrich

S7276

硝酸银

Silver nitrate anhydrous, ≥99.999% trace metals basis

Sigma-Aldrich

792276

硝酸银

Silver nitrate ReagentPlus®, ≥99.0% (titration)

Sigma-Aldrich

S6506

硝酸银

Supelco

Supelco

21319-U

涂覆 10% AgNO3 的硅胶

Hames BD
Gel Electrophoresis of Proteins: A Practical Approach (1998)
Liming Wang et al.
ACS nano, 9(6), 6532-6547 (2015-05-23)
To predict potential medical value or toxicity of nanoparticles (NPs), it is necessary to understand the chemical transformation during intracellular processes of NPs. However, it is a grand challenge to capture a high-resolution image of metallic NPs in a single
Irina Blinova et al.
Environmental science and pollution research international, 20(5), 3456-3463 (2012-11-13)
Although silver nanoparticles (NPs) are increasingly used in various consumer products and produced in industrial scale, information on harmful effects of nanosilver to environmentally relevant organisms is still scarce. This paper studies the adverse effects of silver NPs to two
Tao Xu et al.
Organic letters, 14(21), 5416-5419 (2012-10-24)
A silver-catalyzed intramolecular oxidative aminofluorination of alkynes has been developed by using NFSI as a fluorinating reagent. This reaction represents an efficient method for the synthesis of various 4-fluoroisoquinolines and 4-fluoropyrrolo[α]isoquinolines.
Benjamin P Colman et al.
PloS one, 8(2), e57189-e57189 (2013-03-08)
A large fraction of engineered nanomaterials in consumer and commercial products will reach natural ecosystems. To date, research on the biological impacts of environmental nanomaterial exposures has largely focused on high-concentration exposures in mechanistic lab studies with single strains of

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