Merck

369438

Sigma-Aldrich

foil, thickness 1.0 mm, 99.99% trace metals basis

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线性分子式:
Ag
CAS号:
分子量:
107.87
EC 号:
MDL编号:
PubChem化学物质编号:
NACRES:
NA.23

质量水平

检测方案

99.99% trace metals basis

形式

foil

电阻率

1.59 μΩ-cm, 20°C

厚度

1.0 mm

bp

2212 °C (lit.)

mp

960 °C (lit.)

密度

10.49 g/cm3 (lit.)

SMILES string

[Ag]

InChI

1S/Ag

InChI key

BQCADISMDOOEFD-UHFFFAOYSA-N

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此商品
326984265519265527
Silver foil, thickness 1.0 mm, 99.99% trace metals basis

Sigma-Aldrich

369438

Silver foil, thickness 0.25 mm, 99.9% trace metals basis

Sigma-Aldrich

326984

Silver foil, thickness 0.025 mm, 99.9% trace metals basis

Sigma-Aldrich

265519

Silver foil, thickness 0.1 mm, 99.9% trace metals basis

Sigma-Aldrich

265527

form

foil

form

foil

form

foil

form

foil

resistivity

1.59 μΩ-cm, 20°C

resistivity

1.59 μΩ-cm, 20°C

resistivity

1.59 μΩ-cm, 20°C

resistivity

1.59 μΩ-cm, 20°C

bp

2212 °C (lit.)

bp

2212 °C (lit.)

bp

2212 °C (lit.)

bp

2212 °C (lit.)

mp

960 °C (lit.)

mp

960 °C (lit.)

mp

960 °C (lit.)

mp

960 °C (lit.)

density

10.49 g/cm3 (lit.)

density

10.49 g/cm3 (lit.)

density

10.49 g/cm3 (lit.)

density

10.49 g/cm3 (lit.)

一般描述

Silver is a noble metal, extensively used in SERS, photocatalysis and solar cells. The surface of silver can be functionalized to attain specific properties such as biocompatibility and vapor selectivity of sensors.3 Iodized silver foils and thin films find potential use as SERS-active metal substrates.1 Cu substrates laminated with Ag foils, have compatible coefficient of thermal expansion (CTE), to be used for electronic packaging. Porous ZnO nanoplates deposited on silver foil with tunable hydrophobicity may be fabricated.3

数量

6.6g = 25×25mm;26.4g = 50×50mm

象形图

Environment

警示用语:

Warning

危险声明

预防措施声明

危险分类

Aquatic Acute 1 - Aquatic Chronic 1

储存分类代码

13 - Non Combustible Solids

WGK

WGK 3

闪点(F)

Not applicable

闪点(C)

Not applicable

个人防护装备

Eyeshields, Gloves, type N95 (US)


Certificates of Analysis (COA)

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25G
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Direct laminating of silve foils on copper substrate.
Wang PJ, et al.
Journal of Materials Science: Materials in Electronics, 19, 1097-1099 (2008)
Christopher G Jesudason
International journal of molecular sciences, 10(5), 2203-2251 (2009-07-01)
This review is variously a presentation, reflection, synthesis and report with reference to more recent developments of an article - in a journal which has ceased publication - entitled "Some Electrode Theorems with Experimental Corroboration, Inclusive of the Ag/AgCl System"
T Prameela Devi et al.
Indian journal of experimental biology, 51(7), 543-547 (2013-08-01)
A total of 75 isolates belonging to five different species of Trichoderma viz., T. asperellum, T. harzianum, T. longibrachiatum, T. pseudokoningii and T. virens were screened for the production of silver nanoparticles. Although all the isolates produced nanoparticles, T. virens
Muthusamy Prabhu et al.
Journal of nanoscience and nanotechnology, 13(8), 5327-5339 (2013-07-26)
In this study, silver-doped silica- and phosphate-based nanobioactive glass compositions (58SiO2-(33- x)CaO-9P2O5-xAg2O) (x = 0, 0.5, 1, 2 and 3 mol%) were synthesised by a simple and cost-effective sol-gel method. The prepared samples were characterised by X-ray diffraction, Fourier transform
Yumi Kim et al.
Journal of nanoscience and nanotechnology, 13(6), 3897-3900 (2013-07-19)
The objectives of this research were to study biogenic synthesis of Ag(0) nanoparticles and to determine the effects of various experimental conditions such as silver nitrate concentrations, pHs and temperatures controlling for the optimal biosynthesis of Ag(0) nanoparticles. The metal-reducing

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