Cui Xiaohua, Liu Jiaming, Zhang Ending, Gong Ziyang, Liang Liyan, Shi Jun, Hao Xiaopeng, Hu Jiwen, Lu Mangeng
Guangzhou Institute of Chemistry, Chinese Academy of Sciences, Guangzhou, 510650, P. R. China.
CASH GCC Fine Chemicals Incubator (Nanxiong) Co., Ltd, Nanxiong, 512400, P. R. China.
Macromol Rapid Commun. 2023 Apr;44(7):e2200884. doi: 10.1002/marc.202200884. Epub 2023 Feb 22.
Thermally conductive pressure-sensitive adhesive (PSA) has received a great amount of attention in recent years, but the traditional PSA hardly loses adhesion properties after UV irradiation or heating. Therefore, endowing thermally conductive adhesive with UV-responsive peelability becomes a design strategy. Herein, vinyl-functionalized graphene (AA-GMA-G) is prepared by modifying graphene with acrylic acid and subsequently reacting with glycidyl methacrylate. Then, the UV-curable acrylate copolymer is synthesized by grafting glycidyl methacrylate. Finally, the novel thermally conductivity PSA with UV-responsive peelability is obtained by blending the copolymer with AA-GMA-G and photoinitiator. The results show that the PSA at 2 wt% AA-GMA-G loading exhibits an excellent thermal conductivity (0.74 W m K ) and a relatively strong peel strength, increasing by 15% compared with pristine graphene/PSA. Interestingly, the peel strength of AA-GMA-G/PSA can achieve a dramatic drop after UV treatment, and the decrease rate is 96.7%. Therefore, the novel thermally conductive PSA with UV-responsive peelability has potential applications in certain electronic devices.
导热压敏胶粘剂(PSA)近年来受到了广泛关注,但传统的PSA在紫外线照射或加热后几乎不会失去粘附性能。因此,赋予导热胶粘剂紫外线响应剥离性成为一种设计策略。在此,通过用丙烯酸改性石墨烯并随后与甲基丙烯酸缩水甘油酯反应制备乙烯基官能化石墨烯(AA-GMA-G)。然后,通过接枝甲基丙烯酸缩水甘油酯合成紫外线可固化丙烯酸酯共聚物。最后,通过将该共聚物与AA-GMA-G和光引发剂共混,获得了具有紫外线响应剥离性的新型导热PSA。结果表明,当AA-GMA-G负载量为2 wt%时,该PSA表现出优异的热导率(0.74 W m K)和相对较高的剥离强度,与原始石墨烯/PSA相比提高了15%。有趣的是,AA-GMA-G/PSA在紫外线处理后剥离强度会大幅下降,下降率为96.7%。因此,这种具有紫外线响应剥离性的新型导热PSA在某些电子器件中具有潜在应用。