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Do domu > produkty > Półprodukty farmaceutyczne > Fmoc-L-Cys(Trt)-OH CAS 103213-32-7 with Molecular Formula C37H31NO4S and Molecular Weight 585.71 for Proteomics Studies

Fmoc-L-Cys(Trt)-OH CAS 103213-32-7 with Molecular Formula C37H31NO4S and Molecular Weight 585.71 for Proteomics Studies

Szczegóły produktu

Miejsce pochodzenia: CHINY

Nazwa handlowa: Sunshine

Orzecznictwo: ISO,COA

Numer modelu: 103213-32-7

Warunki płatności i wysyłki

Minimalne zamówienie: Negocjacja

Cena: negocjowalne

Szczegóły pakowania: Torba foliowa aluminiowa, bęben

Czas dostawy: 7-15 dni

Zasady płatności: L/C, D/A, T/T, Western Union

Możliwość Supply: TONA

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Molecular Formula C37H31NO4S Fmoc-L-Cys(Trt)-OH

,

Molecular Weight 585.71 Fmoc-L-Cys(Trt)-OH

,

CAS 103213-32-7 Fmoc-L-Cys(Trt)-OH

CAS nr::
C103213-32-7
Wygląd::
Biały do prawie biały Proszek
Wzór molekularny::
C37H31NO4S
Waga cząsteczkowa::
585,71
Einecs nr::
600-408-4
Mdl no.::
MFCD00038538
CAS nr::
C103213-32-7
Wygląd::
Biały do prawie biały Proszek
Wzór molekularny::
C37H31NO4S
Waga cząsteczkowa::
585,71
Einecs nr::
600-408-4
Mdl no.::
MFCD00038538
Fmoc-L-Cys(Trt)-OH CAS 103213-32-7 with Molecular Formula C37H31NO4S and Molecular Weight 585.71 for Proteomics Studies

Product Description:

Product Name: Fmoc-L-Cys(Trt)-OH CAS 103213-32-7



Synonyms:

N(alpha)-Fluorenylmethyloxycarbonyl-S-tritylcysteine;

L-Cysteine, N-[(9H-fluoren-9-ylmethoxy)carbonyl]-S-(triphenylmethyl)-;

N(9Fluorenylmethoxycarbonyl)StritylLcysteine;

Fmoc-S-trityl-L-cysteine;



Chemical & Physical Properties

Appearance: White to almost white powder

Assay: NLT99%

Melting Point: 170-173 ℃(lit.)

Boiling point: 763.4±60.0 ℃(Predicted)

Flash Point: 415.5 ℃

Density: 1.270±0.06 g/cm3(Predicted)

Water Solubility: Insoluble in water. Soluble in most organic solvents.



Safety Information

Risk Statements: R36/37/38

Safety Statements: S22-S24/25

Hazard Codes: Xi

HS Code: 2930909090



Application: It is potentially useful for proteomics studies, and solid phase peptide synthesis techniques. Cysteine is versatile amino acid involved with many biological processes, including the formation of disulfide bonds - a critical component of protein structure. This compound could be useful as an unusual amino acid analog to aid in the deconvolution of protein structure and function.



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