songxiaofeng
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- Supervisor of Doctorate Candidates
- Supervisor of Master's Candidates
- Name (Pinyin):songxiaofeng
- E-Mail:
- School/Department:化学工程学院
- Administrative Position:制药工程系主任
- Education Level:Postgraduate (Postdoctoral)
- Business Address:北湖校区化工化生楼B513
- Contact Information:13080037022(微信)/QQ:15359494615
- Degree:Doctoral Degree in Science
- Alma Mater:吉林大学
- Teacher College:化学工程学院
- Discipline:Polymer Chemistry and Physics
Applied Chemistry
Contact Information
No content
- Paper Publications
A shape memory polyurethane with extended service life by self-healing and recyclable properties
Release time:2026-06-22 Hits:
- DOI number:10.1021/acsapm.4c01944
- Journal:ACS Applied Polymer Materials
- Key Words:PU, SM, self-healing property, assist, recyclability
- Abstract:Stimuli-responsive intelligent polyurethanes (PUs) have garnered interest recently because of their transdisciplinary nature and wide variety of applications. Despite significant advancements in stimuli -responsive intelligent polymers, it is still a challenge to integrate multiple features including high toughness, reversible shape memory (SM), self-repair, and recyclability into a single PU. In this work, a series of cross-linked PUs were synthesized using poly(ε-caprolactone) diol (PCL), hexamethylene diisocyanate (HDI), 1,4-butanediol (BDO), or (2-hydroxyethyl) disulfide (HEDS) as a chain extender, and pentaerythritol (PE) as a cross-linker. The effect of HDI content and chain extender species on the stimuli-responsive features of PU was discovered. When the molar ratio of HDI/PCL was 5/1 and HEDS was chosen as the chain extender, the PU exhibited excellent SM and self-repair features. The shape recovery rate exceeded 90% at 58 °C in 16 s. Its tensile strength and elongation at a break are 19.8 MPa and 694.9% after self-repair at 70 °C, respectively, and it can bear a weight of 1 kg. The self-repair efficiency reaches 96.7%. At the same time, self-repair can be boosted by SM behavior, and the corresponding mechanism is put forward. The mechanical properties of PU which undergoes 3 rounds of recycling can still match those of the original material. This work provides versatility and sustainability for PU and opens more possibilities for PU in engineering applications.
- Co-author:陈友华
- First Author:宋晓峰(教师)
- Indexed by:Journal paper
- Issue:6
- Page Number:6635-6644
- Translation or Not:no
- Date of Publication:2024-09-13
- Included Journals:SCI
