Product correctly added to cart.

discount label
Bis-PEG17-NHS ester
View 3D

Biosynth logo

Bis-PEG17-NHS ester

CAS: 2221948-93-0

Ref. 3D-WND94893

25mgTo inquire
50mgTo inquire
100mgTo inquire
250mgTo inquire
500mgTo inquire
Estimated delivery in United States, on Tuesday 28 Jan 2025

Product Information

Name:
Bis-PEG17-NHS ester
Description:

Bis-PEG17-NHS ester is a homobifunctional polyethylene glycol (PEG) derivative that contains two NHS (N-hydroxysuccinimide) functional groups. It is commonly used in bioconjugation and drug delivery applications. Bis-PEG17-NHS ester can react with primary amines on proteins, peptides, or other molecules to form stable amide bonds. This allows for the attachment of PEG chains to enhance solubility, improve stability, reduce immunogenicity, and increase circulation time of the conjugated molecule. With its high purity and excellent reactivity, Bis-PEG17-NHS ester is an ideal choice for researchers and scientists working in the field of PEGylation and bioconjugation.

Notice:
Our products are intended for lab use only. For any other use, please contact us.
Brand:
Biosynth
Long term storage:
Notes:

Chemical properties

Molecular weight:
1,061.1 g/mol
Formula:
C46H80N2O25
Purity:
Min. 95%
MDL:
Melting point:
Boiling point:
Flash point:
Density:
Concentration:
EINECS:
Merck:
HS code:

Hazard Info

UN Number:
EQ:
Class:
H Statements:
P Statements:
Forbidden to fly:
Hazard Info:
Packing Group:
LQ:

Technical inquiry about: 3D-WND94893 Bis-PEG17-NHS ester

Please use instead the cart to request a quotation or an order

If you want to request a quotation or place an order, please instead add the desired products to your cart and then request a quotation or order from the cart. It is faster, cheaper, and you will be able to benefit from the available discounts and other advantages.

* Mandatory fields.
Welcome to CymitQuimica!We use cookies to enhance your visit. We do not include advertising.

Please see our Cookies Policy for more details or adjust your preferences in "Settings".