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Methylammonium iodide >99.99% | CAS 14965-49-2 Electronic materials with low price

Productdetails:
Plaats van herkomst: Xi'an
Merknaam: Wango
Certificering: GMP
Modelnummer: Wango-0008
Betalen & Verzenden Algemene voorwaarden:
Min. bestelaantal: 1000 gram per keer, monster: 10 gram
Prijs: FOB price 1000-1080usd/kg ,can be Negotiable .
Verpakking Details: 1- 25 kg voor elke papieren trommelverpakking
Levertijd: 3-5 Werkdag
Betalingscondities: Western Union, MoneyGram, T/T
Levering vermogen: 300kg één maand

Gedetailleerde informatie

Formulier: Poeder Andere naam: Methylammoniumjodide
Allergeen -informatie: Methylammoniumjodide Applicatie: Methylammoniumjodide
Moleculaire formule: C17H8Cl2F8N2O3 andere naam: Edoxaban
Oorsprong: China Houdbaarheid: 2 jaar
Staat: Wit fijn poeder Fabriekslevering rechtstreeks: Ja ((nootropics depot)
Productgebruik: Oraal gebruik Bewaarcondities: Bewaar op een koele, droge plek
Uiterlijk: Wit kristalpoeder Functie: Koelmiddel
Cijfer: Farmaceutische producten

Productomschrijving

Methylammonium iodide >99.99% | CAS 14965-49-2 Electronic materials

 

Methylammonium iodide >99.99% | CAS 14965-49-2 Electronic materials with low price 0

 

 

 

Methylammonium Iodide (MAI; CAS No: 14965-49-2) is one of the most common precursors used in the preparation

of perovskite-based opto-electronic systems, including perovskite solar cells (Nath et al., 2022). Since the seminal work

by Kojima et al (2009) which demonstrated the use of the organolead halide perovskite CH3NH3PbI3 as a photoactive

material in solar cells, methylammonium lead triiodide perovskites have been extensively studied. Recent work has provided

valuable insights into their properties and optoelectronic performance (Reichert et al., 2020). MAI has also been recently used

in the precursor solution of an all-perovskite tandem solar cell (Lin et al., 2022). With a purity level > 99.99%, extremely low

moisture content and batch-to-batch reproducibility, Borun New Material - ChemBorun' Methylammonium Iodide is ultra-pure

for consistent results and superior performance. MAI is a free flowing powder, snow white in appearance. Borun New

Material - ChemBorun can provide g to kg quantities. Kojima, A., Teshima, K., Shirai, Y., Miyasaka, T., 2009. Organometal

Halide Perovskites as Visible-Light Sensitizers for Photovoltaic Cells. J. Am. Chem. Soc. 131, 6050–6051. Lin, R., Xu, J., Wei,

M. et al. All-perovskite tandem solar cells with improved grain surface passivation. Nature 603, 73–78 (2022). Nath, B.,

Ramamurthy, P.C., Mahapatra, D.R., Hegde, G., 2022. Electrode Transport Layer–Metal Electrode Interface Morphology T

ailoring for Enhancing the Performance of Perovskite Solar Cells. ACS Appl. Electron. Mater. 4, 689–697. Reichert, S., An, Q.,

Woo, Y.-W., Walsh, A., Vaynzof, Y., Deibel, C., 2020. Probing the ionic defect landscape in halide perovskite solar cells. Nat.

Commun. 11, 6098.

 

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