Preparation of a certified reference material of trifunctional polypropylene oxide

Jingxia Wang, Xiaodong Fan, Wei Tian, Guangwen Cheng, Juanli Li

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Due to the lack of trifunctional polypropylene oxide (TPPO) certified reference material (CRM) with precise molecular weight on the market, it is therefore very important to prepare such CRM to calibrate the molecular weight testing equipments, and assure the quality in polyurethanes manufacture. In this paper, the certification of TPPO CRM was introduced based on the size-exclusion chromatography with a multi-angle laser light scattering (SEC-MALLS) method and end-group analysis method. First, TPPO was synthesized via controlled ring-opening polymerization of propylene oxide in the condition of both high temperature and pressure using double metal cyanide (DMC) complexes as catalyst, and TPPO oligomer as coinitiator. Then, the molecular weight homogeneity of TPPO CRM was evaluated by using the F-distribution model, and the storage stability of the molecular weight of TPPO CRM was assessed. All potential uncertainty factors for the certification of TPPO CRM were evaluated using cause-effect diagram. The results showed that the chemical structure of TPPO CRM was an anticipatory structure, which was confirmed by IR. The molecular weight homogeneity of TPPO CRM was qualified. The storage stability period of the final product was one year with respect to its molecular weight, and the certification results of TPPO CRM obtained by SEC-MALLS and end-group analysis were 4996±162 and 5025±146, respectively.

源语言英语
主期刊名Materials and Design
1961-1968
页数8
DOI
出版状态已出版 - 2011
活动2011 International Conference on Advanced Engineering Materials and Technology, AEMT 2011 - Sanya, 中国
期限: 29 7月 201131 7月 2011

出版系列

姓名Advanced Materials Research
284-286
ISSN(印刷版)1022-6680

会议

会议2011 International Conference on Advanced Engineering Materials and Technology, AEMT 2011
国家/地区中国
Sanya
时期29/07/1131/07/11

指纹

探究 'Preparation of a certified reference material of trifunctional polypropylene oxide' 的科研主题。它们共同构成独一无二的指纹。

引用此