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Electronic G2Electronic G3Electronic G4Electronic G5Superior ReagentElectronic & Advanced Materials

Electronic Grade Ethanol

C₂H₅OH · CAS 64-17-5

Electronic Grade Ethanol considered for semiconductor cleaning, electronics processing, precision manufacturing. Selection begins with the application, critical limits, destination, pack and qualification plan.

A common starting point

semiconductor cleaning

Molecular weight

46.07 g/mol

Boiling point

78.4 °C

Density

0.789 g/mL

High-purity optionsBatch documentationFlexible packaging review
Ethanol manufacturing, filling and industrial supply environment

Product identity

CAS number
64-17-5
Formula
C₂H₅OH
Boiling point
78.4 °C
Density
0.789 g/mL

Product overview

A product route built around the application

Ethanol is considered for processes that need a consistent material, controlled critical impurities and a supply format that can move from qualification to routine use. The grade should be selected against the actual process—not a generic purity claim.

01

High-purity options

Compare listed grades and current product-specific limits.

02

Controlled attributes

Focus testing on the impurities and performance risks that matter.

03

Supply planning

Align sample, production pack, forecast and document route early.

Purification and controlled manufacturing route for Ethanol

Application fit

Qualify Electronic Grade Ethanol around the process

The product name begins the discussion. Critical attributes, test methods, packaging and routine supply conditions determine whether a candidate is useful.

01

semiconductor cleaning

Review the current specification and representative sample against the actual process and qualified baseline.

02

electronics processing

Review the current specification and representative sample against the actual process and qualified baseline.

03

precision manufacturing

Review the current specification and representative sample against the actual process and qualified baseline.

Before you specify

A better enquiry starts with four answers

A higher grade is not automatically the better choice. The useful option fits the process, analytical method, packaging route and qualification plan without adding controls the application does not need.

01

What role does the material perform in the process?

02

Which limits and methods control customer acceptance?

03

What sample and production pack represent routine use?

04

Which destination, documents, annual demand and timing apply?

Specification data

Compare the listed grade columns

This table is an indicative product overview for initial screening. Confirm the current controlled specification, test methods, reporting limits and available lot documentation before qualification or purchase.

ParameterTest methodUnitG4G5AR
Assay (GC)GC-FID%≥99.999≥99.9999≥99.7
Water Content (KF)Karl Fischerppm≤20≤10≤1000
Total Metals (ICP-MS)ICP-MSppb ea.≤0.5<0.1
Na (Sodium)ICP-MSppb≤0.3<0.1
Fe (Iron)ICP-MSppb≤0.2<0.05
MethanolGC-FIDppm≤5≤1≤200
AcetaldehydeGC-FIDppm≤1≤0.5≤10
Residue on EvaporationGravimetricppm≤1≤0.5≤5

Website values do not replace a signed sales specification. The agreed specification and lot-specific Certificate of Analysis govern supplied material.

Electronic grade context

Use the grade scale as a first comparison

SEMI C1 describes liquid-chemical grades and analytical procedures. A grade name helps organise a discussion; your process specification still decides which limits and methods are acceptable.

Electronic Grade Purity Comparison — SEMI C1 StandardG1 → G5
GradePurity (GC)Metals (ICP)ParticlesWater (KF)Process Node
G2
≥99.9%
≤10 ppb≤100/mL≤50 ppm≥180nm Mature Node
G3
≥99.99%
≤2 ppb≤20/mL≤20 ppm45–180nm
G4
≥99.999%
≤0.5 ppb≤10/mL≤10 ppm7–45nm
G5
≥99.9999%
<0.1 ppb≤5/mL≤5 ppm<7nm / EUV / Marangoni

All grades tested by ICP-MS (28 elements), in-line LPC (ISO Class 3 fill), and Karl Fischer titration. G5 = SEMI C1 Tier D. Full CoA per lot.  Request CoA template →

Where this product is used

Application routes for Ethanol

These examples help with discovery. They are not claims of universal suitability; material compatibility, process performance and the controlled specification still need review.

Ethanol industrial and analytical application environment

Semiconductor & electronics

  • Semiconductor substrate pre-clean before deposition (Si, SiC, GaN)
  • Optical fiber & photonic waveguide end-face cleaning
  • LED, VCSEL & laser diode device cleaning
  • Laser optical component & lens surface maintenance
  • Silicon & GaAs solar cell substrate preparation
  • Thin-film deposition (ALD, CVD) pre-treatment

Battery & energy storage

  • SEI layer formation & solid electrolyte research
  • Li-metal anode surface pre-treatment
  • Solid-state electrolyte synthesis solvent

Laboratory & analytical

  • HPLC mobile phase
  • pharmaceutical formulation
  • DNA/RNA extraction
  • cell culture medium preparation

Industrial & other

  • Pharmaceutical facility sterilization
  • food flavoring & extraction
  • fuel ethanol blending
  • cosmetics formulation
  • medical device disinfection

Representative application cases

A practical evidence route for Ethanol

These are illustrative composite qualification scenarios, not named customer claims. Exact methods, limits and acceptance decisions belong to the customer’s controlled process.

CASE 01

European process qualification

A contamination-sensitive production team compares Ethanol (Electronic Grade) with its incumbent material using the agreed water, metals, organic-impurity, residue and particle controls.

Evidence route

Supplier CoA and specification data are evaluated alongside a representative process trial and incoming-control plan.

CASE 02

North American second-source review

A site qualifies Ethanol (Electronic Grade) for supply resilience without changing its approved process or dispensing route.

Evidence route

The review connects sample identity, production-pack compatibility, analytical comparison and documented change communication.

Purification, filtration, testing and clean filling for Ethanol

Manufacturing advantage

A controlled route from purification to final filling

The supply route for Ethanol connects incoming-material review, product-specific treatment, controlled transfer, testing, filling and lot documentation. Exact equipment and controls depend on the qualified product and grade.

01

Purification

Product-specific separation or treatment route.

02

Filtration

Compatible filtration and controlled transfer.

03

Testing

Release against the agreed specification.

04

Clean filling

Pack, closure and lot identification review.

Explore manufacturing →

Quality assurance & documentation

Evidence your quality team can review

Documents are matched to the supplied product, grade, lot and destination. The links below request the current controlled version; they are not static files with uncertain revision status.

Quality testing and controlled documentation for Ethanol

Packaging options

Choose the pack with the handling route in mind

Availability varies by grade and destination. Confirm container material, closure, headspace, connection, minimum order, dangerous-goods route and qualification-lot needs.

01

Qualification & laboratory packs

For evaluation, method work and lower-volume routine use.

1 L4 L
02

Drums & production packs

For regular production consumption and controlled dispensing.

20 L200 L
03

IBC & bulk routes

For higher-volume programmes after site, grade and logistics review.

IBCTanker

Technical resources

Continue the technical review

Use application notes for context, then confirm current product documents before qualification.

Knowledge centre →

Start a product review

Need a reliable supply route for Ethanol?

Send the application, current specification, critical limits, pack, destination and forecast so the response can be technically useful.