P4494

Potassium hydroxide solution

volumetric, 8.0 M KOH (8.0N)

Manufacturer: Supelco

CAS Number: 1310-58-3

Select a Size

Pack Size SKU Availability Price
50 ML P4494-50-ML In Stock ₹ 8,640.00

P4494 - 50 ML

₹ 8,640.00

In Stock

Quantity

1

Base Price: ₹ 8,640.00

GST (18%): ₹ 1,555.20

Total Price: ₹ 10,195.20

quality

volumetric

Quality Level

100

concentration

8.0 M KOH (8.0N)

SMILES string

[K+].[O-][H]

InChI

1S/K.H2O/h;1H2/q+1;/p-1

InChI key

KWYUFKZDYYNOTN-UHFFFAOYSA-M

Other Options

Image Product Name Manufacturer Price Range
50-188-3612
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide | 1310-58-3 | MFCD00003553 | 500g
Sigma Aldrich Fine Chemicals Biosciences ₹ 6,220.21
50-188-3611
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide >=85% KOH basis, pellets, white | 1310-58-3 | MFCD00003553 | 2KG
Sigma Aldrich Fine Chemicals Biosciences ₹ 16,455.75
50-188-3610
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide >=85% KOH basis, pellets, white | 1310-58-3 | MFCD00003553 | 250G
Sigma Aldrich Fine Chemicals Biosciences ₹ 4,757.14
50-188-3599
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide ACS reagent, >=85%, pellets | 1310-58-3 | MFCD00003553 | 6X500G
Sigma Aldrich Fine Chemicals Biosciences ₹ 35,531.36
50-188-3605
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide solution|1310-58-3 | MFCD00003553 | 1l
Sigma Aldrich Fine Chemicals Biosciences ₹ 8,342.10
50-188-3592
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide technical, >=85%, powder | 1310-58-3 | MFCD00003553 | 1KG
Sigma Aldrich Fine Chemicals Biosciences ₹ 7,144.26
50-188-3593
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide technical, >=85%, powder | 1310-58-3 | MFCD00003553 | 5KG
Sigma Aldrich Fine Chemicals Biosciences ₹ 26,412.37
50-188-3614
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide BioXtra | 1310-58-3 | MFCD00003553 | 500g
Sigma Aldrich Fine Chemicals Biosciences ₹ 9,946.35
50-188-3608
Sigma Aldrich Fine Chemicals Biosciences Potassium hydroxide puriss. p.a., >=86% (T), pellets | 1310-58-3 | MFCD00003553 | 5KG
Sigma Aldrich Fine Chemicals Biosciences ₹ 39,514.17
NC1089145
Aqua Solutions Potassium Hydroxide | 1310-58-3 | MFCD00003553
Aqua Solutions ₹ 18,297.01
...

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Description

  • Application: Impact of Modifications from Potassium Hydroxide on Porous Semi-IPN Hydrogel Properties and Its Application in Cultivation.: This study explores how potassium hydroxide modifications enhance the properties of porous semi-interpenetrating polymer network (IPN) hydrogels, specifically for use in cultivation applications. These modifications improve the hydrogel′s mechanical strength and water retention capacity, making it a viable option for agricultural purposes. (Tuan et al., 2024). Characterization of Bioadsorbents from Organic Municipal Waste.: The research investigates the preparation and characterization of bioadsorbents derived from organic municipal waste treated with potassium hydroxide. These bioadsorbents show enhanced adsorption capacities for pollutants, demonstrating potential for environmental cleanup applications. (Sołtysik et al., 2024). Robust anion exchange membranes based on ionic liquid grafted chitosan/polyvinyl alcohol/quaternary ammonium functionalized silica for polymer electrolyte membrane fuel cells.: This article discusses the development of durable anion exchange membranes using potassium hydroxide-treated materials. The enhanced stability and conductivity of these membranes are crucial for improving the performance of polymer electrolyte membrane fuel cells. (Jang et al., 2024). [Optimization and application of determination method of cholesterol in various dishes].: This study, written in Chinese, focuses on optimizing a method for determining cholesterol levels in different dishes using potassium hydroxide solution, which improves the accuracy and efficiency of the analytical process. (Chen et al., 2023). Highly efficient sulfur-doped Ni(3)Fe electrocatalysts for overall water splitting: Rapid synthesis, mechanism and driven by sustainable energy.: The paper explores the use of potassium hydroxide in the rapid synthesis of sulfur-doped nickel-iron electrocatalysts. These electrocatalysts exhibit high efficiency in water splitting, driven by sustainable energy sources, offering significant advancements in renewable energy technologies. (Xu et al., 2024).

SAFETY INFORMATION

Pictograms

GHS05,GHS07

Signal Word

Danger

Hazard Statements

H290,H302,H314

Precautionary Statements

P234 - P270 - P280 - P301 + P312 - P303 + P361 + P353 - P305 + P351 + P338

Hazard Classifications

Acute Tox. 4 Oral - Eye Dam. 1 - Met. Corr. 1 - Skin Corr. 1A

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

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KWYUFKZDYYNOTN-UHFFFAOYSA-M

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