Skip to Content
Merck

703184

Indium tin oxide coated glass slide, square

surface resistivity 30-60 Ω/sq, slide

Synonym(s):

ITO, ITO coated slide, square

Sign In to View Organizational & Contract Pricing.

Select a Size

Change View

About This Item

Linear Formula:
In2O3 · (SnO2)x
CAS Number:
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
12352103
MDL number:
Technical Service
Need help? Our team of experienced scientists is here for you.
Let Us Assist


Quality Level

surface resistivity

30-60 Ω/sq

L × W × thickness

25 mm × 25 mm × 1.1 mm

transmittance

84% (nominal at 550nm)

refractive index

n20/D 1.517

SMILES string

O=[Sn]=O.O=[In]O[In]=O

InChI

1S/2In.5O.Sn

InChI key

LNNWKAUHKIHCKO-UHFFFAOYSA-N

General description

Substrate: unpolished float glass, Si02 passivated (200-300 Å)


Still not finding the right product?


wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

dust mask type N95 (US), Eyeshields, Gloves

pictograms

Health hazard

signalword

Danger

hcodes

Hazard Classifications

STOT RE 1 Inhalation

target_organs

Lungs

Storage Class

6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects


Regulatory Listings

Regulatory Listings are mainly provided for chemical products. Only limited information can be provided here for non-chemical products. No entry means none of the components are listed. It is the user’s obligation to ensure the safe and legal use of the product.

703184-VAR: + 703184-10PAK: + 703184-BULK:

jan



Choose from one of the most recent versions:

Certificates of Analysis (COA)

Lot/Batch Number

It looks like we've run into a problem, but you can still download Certificates of Analysis from our Documents section.

If you need assistance, please contact Customer Support

Already Own This Product?

Find documentation for the products that you have recently purchased in the Document Library.

Visit the Document Library


Articles

グラフェンは透明導電性電極の新たな材料として期待されており、カーボンナノチューブや銀ナノワイヤとともに注目されています。

溶液処理機能性材料の進歩は、産業用および民生用電子機器用の薄膜光電子デバイスにつながる。

九州大学 安達先生に有機半導体レーザー材料についてレビューしていただきました。有機ELデバイスが実用化を迎え、その技術を発展させた次世代デバイスとして有機半導体レーザーダイオードの実現が期待されています。

View All Articles