Z193291
Sigma-Aldrich® TLC Plates
silica gel matrix, L × W 20 cm × 20 cm
About This Item
Produtos recomendados
Materiais
aluminum support
silica gel matrix
Características
binder Polymeric
fluorescent indicator
embalagem
pkg of 25 ea
fabricante/nome comercial
Sigma-Aldrich
técnica(s)
thin layer chromatography (TLC): suitable
C × L
20 cm × 20 cm
espessura da camada
200 μm
placa C × L
20 cm × 20 cm
tamanho de partícula
25 μm
Procurando produtos similares? Visita Guia de comparação de produtos
Descrição geral
- Silica gel - for weakly to strongly polar separations, pore size 60 Å
- High purity silica gel - acid washed for separation of aflatoxins
- Cellulose - for partition chromatography, (SigmaCell Type 100 Cellulose)
- Cellulose PEI - for separation of weak anions (amino acids, peptides) PEI plates may turn slightly yellow, affecting separation. Pre-develop plates in distilled water to minimize yellow color.
- Chiral silica - for separation of optically active isomers by ligand exchange, pore size 60Å
Aplicação
- Eco-friendly oil-water separation using bio-Zn oxide-based superhydrophobic membrane: Discusses the development of an environmentally friendly method for oil-water separation using zinc oxide, showcasing its application in water treatment technologies and highlighting its sustainable aspects (Beagan et al., 2024).
- Enhancement of lettuce growth and reduction of chromium uptake: Studies the combined application of zinc oxide and iron nanoparticles to improve plant growth and reduce heavy metal uptake in contaminated soils, emphasizing its significance in environmental and agricultural sciences (Sameer et al., 2024).
- Surface modification of metal oxides for nanoparticle stability and toxicity reduction: Investigates the effects of surface modifications of zinc oxide on the stability and potential toxicity of nanoparticles, providing insights into safer nanoparticle applications in biotechnology and materials science (Monem et al., 2024).
- Development of advanced materials for gas sensing: Examines the application of defect engineering in zinc oxide nanorods to enhance methane gas sensing capabilities, demonstrating the material′s potential in developing sophisticated sensors for environmental monitoring (Li et al., 2024).
Informações legais
produto relacionado
Escolha uma das versões mais recentes:
Certificados de análise (COA)
It looks like we've run into a problem, but you can still download Certificates of Analysis from our Documentos section.
Se precisar de ajuda, entre em contato Atendimento ao cliente
Já possui este produto?
Encontre a documentação dos produtos que você adquiriu recentemente na biblioteca de documentos.
Nossa equipe de cientistas tem experiência em todas as áreas de pesquisa, incluindo Life Sciences, ciência de materiais, síntese química, cromatografia, química analítica e muitas outras.
Entre em contato com a assistência técnica