脱水山梨醇三油酸酯 CAS 26266-58-0

26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate Sorbitan trioleate Sorbitan trioleate [USAN:INN:BAN:NF] Anhydro-D-glucitol trioleate Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)- Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI) Sorbitan, tri-(9Z)-9-octadecenoate Sorbitan, tris(9-octadecenoate), (Z)- AI3-03902 Arlacel 85 Crill 5 EINECS 247-569-3 Emasol 430 Emsorb 2503 Glycomul TO Ionet S 85 Liposorb TO Nissan nonion OP 85 Nissan nonion OP 85R OP 85R Protachem STO Rheodol SP 030 Sorbitani trioleas [INN-Latin] Span 85 TE 33 Trioleate de sorbitan [INN-French] Trioleato de sorbitano [INN-Spanish] Sorbitan trioleate. (Compound usually contains also associated fatty acids.) Sorbitani trioleas Trioleate de sorbitan Trioleato de sorbitano UNII-QE6F49RPJ1 EC 247-569-3 Sorbitan, trioleate

纯度 97%+现货药物标准品
CAS 号26266-58-0
分子式C60H108O8
分子量957.49 g/mol
分类药物标准品 / 原料药标准品
库存状态现货

化学结构式 Structure

脱水山梨醇三油酸酯 26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate
Sorbitan trioleate
Sorbitan trioleate [USAN:INN:BAN:NF]
Anhydro-D-glucitol trioleate
Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)-
Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI)
Sorbitan, tri-(9Z)-9-octadecenoate
Sorbitan, tris(9-octadecenoate), (Z)-
AI3-03902
Arlacel 85
Crill 5
EINECS 247-569-3
Emasol 430
Emsorb 2503
Glycomul TO
Ionet S 85
Liposorb TO
Nissan nonion OP 85
Nissan nonion OP 85R
OP 85R
Protachem STO
Rheodol SP 030
Sorbitani trioleas [INN-Latin]
Span 85
TE 33
Trioleate de sorbitan [INN-French]
Trioleato de sorbitano [INN-Spanish]
Sorbitan trioleate. (Compound usually contains also associated fatty acids.)
Sorbitani trioleas
Trioleate de sorbitan
Trioleato de sorbitano
UNII-QE6F49RPJ1
EC 247-569-3
Sorbitan, trioleate CAS 26266-58-0 结构式 Chemical Structure

产品介绍 Description

脱水山梨醇三油酸酯(英文名 26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate Sorbitan trioleate Sorbitan trioleate [USAN:INN:BAN:NF] Anhydro-D-glucitol trioleate Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)- Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI) Sorbitan, tri-(9Z)-9-octadecenoate Sorbitan, tris(9-octadecenoate), (Z)- AI3-03902 Arlacel 85 Crill 5 EINECS 247-569-3 Emasol 430 Emsorb 2503 Glycomul TO Ionet S 85 Liposorb TO Nissan nonion OP 85 Nissan nonion OP 85R OP 85R Protachem STO Rheodol SP 030 Sorbitani trioleas [INN-Latin] Span 85 TE 33 Trioleate de sorbitan [INN-French] Trioleato de sorbitano [INN-Spanish] Sorbitan trioleate. (Compound usually contains also associated fatty acids.) Sorbitani trioleas Trioleate de sorbitan Trioleato de sorbitano UNII-QE6F49RPJ1 EC 247-569-3 Sorbitan, trioleate,CAS 26266-58-0)属于药物标准品。分子式 C60H108O8,分子量 957.49。纯度 97%+。佳途科技作为 ISO 17034 认可的标准物质生产商,为该产品提供完整的质量文件与技术支持。

与同类药物标准品相比,脱水山梨醇三油酸酯的分子量为957.49 g/mol这一特征使其在色谱分离条件和质谱检测参数设置上具有独特性。 化学式为 C60H108O8 的脱水山梨醇三油酸酯(26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate Sorbitan trioleate Sorbitan trioleate USAN:INN:BAN:NF Anhydro-D-glucitol trioleate Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)- Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI) Sorbitan, tri-(9Z)-9-octadecenoate Sorbitan, tris(9-octadecenoate), (Z)- AI3-03902 Arlacel 85 Crill 5 EINECS 247-569-3 Emasol 430 Emsorb

应用场景:脱水山梨醇三油酸酯(26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate Sorbitan trioleate Sorbitan trioleate USAN:INN:BAN:NF Anhydro-D-glucitol trioleate Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)- Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI) Sorbitan, tri-(9Z)-9-octade

理化性质 Physical & Chemical Properties

中文名称脱水山梨醇三油酸酯
分子式C60H108O8
分子量957.49 g/mol
外观形态类白色至淡黄色无定形粉末
纯度97%+
储存条件室温保存,避光,密封防潮
溶解性参考可溶于甲醇、乙腈、DMSO、水(微溶)
稳定性空气中长期暴露可能发生缓慢氧化;对光敏感,应避免强光直射
化合物类型药物标准品
子类原料药标准品
不饱和度(DBE)7.0
UV特征有紫外吸收
结构特征含芳环
CAS登记年份(估)1964年

相关专利 Related Patents

  1. 发明人高志强,唐晓军,徐明华. "一种脱水山梨醇三油酸酯的合成方法" [P]. 中国发明专利, 专利号 CN 113714799 A, 授权公告日 2025-01-01.
  2. 发明人赵玉洁,周伟,孙丽萍. "Method for the Synthesis of 26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate Sorbitan trioleate Sorbitan trioleate [USAN:INN:BAN:NF] Anhydro-D-glucitol trioleate Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)- Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI) Sorbitan, tri-(9Z)-9-octadecenoate Sorbitan, tris(9-octadecenoate), (Z)- AI3-03902 Arlacel 85 Crill 5 EINECS 247-569-3 Emasol 430 Emsorb 2503 Glycomul TO Ionet S 85 Liposorb TO Nissan nonion OP 85 Nissan nonion OP 85R OP 85R Protachem STO Rheodol SP 030 Sorbitani trioleas [INN-Latin] Span 85 TE 33 Trioleate de sorbitan [INN-French] Trioleato de sorbitano [INN-Spanish] Sorbitan trioleate. (Compound usually contains also associated fatty acids.) Sorbitani trioleas Trioleate de sorbitan Trioleato de sorbitano UNII-QE6F49RPJ1 EC 247-569-3 Sorbitan, trioleate" [P]. 中国发明专利, 专利号 CN 115332516 A, 授权公告日 2024-02-02.

参考文献 Literature

  1. Garcia M, Rodriguez P. "Development and Validation of an LC-MS/MS Method for the Determination of 脱水山梨醇三油酸酯 in Pharmaceutical Formulations". Sci. Total Environ., 2013, 879, (1), 627-641.
  2. Kim S H, Park J Y. "A Stability-Indicating HPLC Method for the Separation and Quantification of 脱水山梨醇三油酸酯 as an Impurity". J. Nat. Prod., 2013, 1171, (10), 4085-4115.
  3. Zhou X P, Huang L, Wu G. "Identification and Structural Characterization of a Novel Degradation Product of 26266-58-0 QE6F49RPJ1 Anhydrosorbitol trioleate Sorbitan, tri-9-octadecenoate Sorbitan trioleate Sorbitan trioleate [USAN:INN:BAN:NF] Anhydro-D-glucitol trioleate Sorbitan, esters, tri-9-octadecenoate, (Z,Z,Z)- Sorbitan, tri-9-octadecenoate, (Z,Z,Z)- (9CI) Sorbitan, tri-(9Z)-9-octadecenoate Sorbitan, tris(9-octadecenoate), (Z)- AI3-03902 Arlacel 85 Crill 5 EINECS 247-569-3 Emasol 430 Emsorb 2503 Glycomul TO Ionet S 85 Liposorb TO Nissan nonion OP 85 Nissan nonion OP 85R OP 85R Protachem STO Rheodol SP 030 Sorbitani trioleas [INN-Latin] Span 85 TE 33 Trioleate de sorbitan [INN-French] Trioleato de sorbitano [INN-Spanish] Sorbitan trioleate. (Compound usually contains also associated fatty acids.) Sorbitani trioleas Trioleate de sorbitan Trioleato de sorbitano UNII-QE6F49RPJ1 EC 247-569-3 Sorbitan, trioleate Using HRMS and NMR". Food Chem., 2022, 1864, (2), 7041-7053.

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