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Salidroside powder Raw Materials CAS 10338-51-9
Product Overview:
Salidroside powder Light brown red to white crystalline powder; Fragrant, bitter taste. Salidroside CAS 10338-51-9 is a compound extracted from the dried roots and stems of Rhodiola rosea or dried whole grass of the large plant of the sedum family. Salidroside Raw Materials have the advantages of tumor prevention, immune function enhancement, aging delay, fatigue resistance, hypoxia resistance, radiation resistance, and anti-aging. Bidirectional regulation of the central nervous system, repair and protection of the body.
Salidroside powder Raw Materials CAS 10338-51-9 Attributes
MF:C14H20O7
MW:300.3
EINECS:695-621-2
Specification:Salidroside powder
Sample:Salidroside powder
Brand:Salidroside powder
Appearance: powder
Storage: Cool Dry Place
Brand: chemical Raw Materials
Shelf Life: 2 Years
Test Method: HPLC
Salidroside powder Raw Materials CAS 10338-51-9 Details
Uses and synthesis of Salidroside powder
Salidroside powder Light brown red to white crystalline powder; Fragrant, bitter taste. Salidroside CAS 10338-51-9 is a compound extracted from the dried roots and stems of Rhodiola rosea or dried whole grass of the large plant of the sedum family. Salidroside Raw Materials have the advantages of tumor prevention, immune function enhancement, aging delay, fatigue resistance, hypoxia resistance, radiation resistance, and anti-aging. Bidirectional regulation of the central nervous system, repair and protection of the body.
Applications/Functions of Salidroside powder
Salidroside powder has antibacterial effect, protects cardiovascular function, effective antioxidant, anti-cancer activity, enhances memory and anti-radiation effect
Physicochemical Property of Salidroside powder
Light brown red to white crystalline powder; Fragrant, bitter taste. Derived from the dried roots and rhizomes of Rhodiola macroflorum in the sedum family.
Production methodprocess of Salidroside powder
Salidroside CAS 10338-51-9 is prepared by the condensation of o-methylbenzaldehyde and acetaldehyde under alkaline conditions