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Merck

GF69202706

亜鉛

foil, light tested, 100x100mm, thickness 0.05mm, as rolled, 99.99+%

別名:

亜鉛

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¥67,800

¥67,800


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この商品について

実験式(ヒル表記法):
Zn
CAS番号:
分子量:
65.39
MDL番号:
UNSPSCコード:
12141750
PubChem Substance ID:
NACRES:
NA.23

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蒸気圧

1 mmHg ( 487 °C)

アッセイ

99.99%

フォーム

foil

メーカー/製品名

Goodfellow 692-027-06

抵抗性

5.8 μΩ-cm, 20°C

サイズ×厚み

100x100 mm × 0.05 mm

bp

907 °C (lit.)

mp

420 °C (lit.)

密度

7.133 g/mL at 25 °C (lit.)

SMILES記法

[Zn]

InChI

1S/Zn

InChI Key

HCHKCACWOHOZIP-UHFFFAOYSA-N

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当該品目
GF36256631GF59993061GF77739632
亜鉛 foil, light tested, 100x100mm, thickness 0.05mm, as rolled, 99.99+%

GF69202706

亜鉛

亜鉛 foil, light tested, 100x100mm, thickness 0.05mm, as rolled, 99.95+%

GF36256631

亜鉛

亜鉛 foil, light tested, 100x100mm, thickness 0.025mm, as rolled, 99.95+%

GF59993061

亜鉛

亜鉛 foil, light tested, 100x100mm, thickness 0.075mm, as rolled, 99.95+%

GF77739632

亜鉛

manufacturer/tradename

Goodfellow 692-027-06

manufacturer/tradename

Goodfellow 362-566-31

manufacturer/tradename

Goodfellow 599-930-61

manufacturer/tradename

Goodfellow 777-396-32

form

foil

form

foil

form

foil

form

foil

assay

99.99%

assay

99.95%

assay

99.95%

assay

99.95%

resistivity

5.8 μΩ-cm, 20°C

resistivity

5.8 μΩ-cm, 20°C

resistivity

5.8 μΩ-cm, 20°C

resistivity

5.8 μΩ-cm, 20°C

density

7.133 g/mL at 25 °C (lit.)

density

7.133 g/mL at 25 °C (lit.)

density

7.133 g/mL at 25 °C (lit.)

density

7.133 g/mL at 25 °C (lit.)

bp

907 °C (lit.)

bp

907 °C (lit.)

bp

907 °C (lit.)

bp

907 °C (lit.)

詳細

For updated SDS information please visit www.goodfellow.com.

法的情報

Goodfellow製品

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試験成績書(COA)

Lot/Batch Number

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以前この製品を購入いただいたことがある場合

文書ライブラリで、最近購入した製品の文書を検索できます。

文書ライブラリにアクセスする

Yang Liu et al.
Chemistry (Weinheim an der Bergstrasse, Germany), 13(23), 6667-6673 (2007-05-31)
Well-aligned zinc oxide microrod and microtube arrays with high aspect ratios were fabricated on zinc foil by a simple solution-phase approach in an aqueous solution of ethylenediamine (en). The shape of the ZnO microstructures can be easily modulated from rods
Zhengquan Li et al.
Chemistry (Weinheim an der Bergstrasse, Germany), 10(22), 5823-5828 (2004-10-09)
A solution surface-erosion route was successfully employed to produce one-dimensional (1D) ZnO nanostructures. ZnO nanorod arrays and three-dimensional urchin-like assemblies could be selectively obtained with different manipulations. In this process, zinc foil was introduced to an organic solution system and
Pritesh Hiralal et al.
ACS nano, 4(5), 2730-2734 (2010-04-27)
Solid-state and flexible zinc carbon (or Leclanche) batteries are fabricated using a combination of functional nanostructured materials for optimum performance. Flexible carbon nanofiber mats obtained by electrospinning are used as a current collector and cathode support for the batteries. The
Hongqin Liu et al.
ACS applied materials & interfaces, 1(9), 2086-2091 (2010-04-02)
Zinc, silicon, and steel superhydrophobic surfaces were prepared by a simple solution-immersion technique. In the case of zinc, the method consists of dipping of the substrate in a prehydrolyzed methanol solution of 1H,1H,2H,2H-(perfluorooctyl)trichlorosilane [CF(3)(CF(2))(5)(CH(2))(2)SiCl(3), PFTS] for 24 h at 50
Huibo Chen et al.
Nanoscale research letters, 5(3), 570-575 (2009-01-01)
We reported the optical and wettability properties of aligned zinc oxide micro/nanotube arrays, which were synthesized on zinc foil via a simple hydrothermal method. As-synthesized ZnO micro/nanotubes have uniform growth directions along the [0001] orientations with diameters in the range

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