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使用原子和实验技术研究基于聚乙二醇二丙烯酸酯的纳米复合水凝胶中的热传输现象。

Thermal Transport Phenomena in PEGDA-Based Nanocomposite Hydrogels Using Atomistic and Experimental Techniques.

作者信息

Kumar Raju, Tewari Abhishek, Parashar Avinash

出版信息

J Phys Chem B. 2024 May 30;128(21):5254-5267. doi: 10.1021/acs.jpcb.4c01376. Epub 2024 May 21.

DOI:10.1021/acs.jpcb.4c01376
PMID:38770752
Abstract

Poly(ethylene glycol) diacrylate (PEGDA) hydrogel is a very peculiar, fascinating material with good chemical stability and biocompatibility. However, the poor thermal transport phenomenon in PEGDA, limits its performance in cartilage replacement and developing therapies for treating burns. In this article, a combined experimental and atomistic approach was adopted to investigate the thermal transport phenomena in PEGDA hydrogel with different weight concentrations of boron nitride nanoplatelets as a function of water content. The incorporation of boron nitride nanofillers helps in enhancing the thermal conductivity of PEGDA hydrogels, and the reinforcement effect was more dominating at lower water content. Experimental investigation was complemented with molecular dynamics-based studies to capture the effect of defective (bicrystalline) boron nitride nanosheets on the interfacial thermal conductance in PEGDA hydrogels. It can be concluded from the simulations that defective nanosheets are superior reinforcement for enhancing the thermal transport in PEGDA hydrogels, and this is independent of the water content. These biocompatible boron nitride nanoparticle (BNNP)-incorporated PEGDA hydrogels with enhanced thermal conductivity are promising materials in addressing locally overheating tissues such as cartilage replacement. They may have comprehensive utility for biomedical applications such as tissue engineering, drug delivery, biosensors, and burn therapy.

摘要

聚乙二醇二丙烯酸酯(PEGDA)水凝胶是一种非常特殊且迷人的材料,具有良好的化学稳定性和生物相容性。然而,PEGDA中较差的热传递现象限制了其在软骨置换和烧伤治疗疗法开发中的性能。在本文中,采用了实验与原子方法相结合的方式,来研究不同重量浓度的氮化硼纳米片作为水含量函数时,在PEGDA水凝胶中的热传递现象。氮化硼纳米填料的加入有助于提高PEGDA水凝胶的热导率,且在较低水含量时增强效果更为显著。实验研究辅以基于分子动力学的研究,以捕捉缺陷(双晶)氮化硼纳米片对PEGDA水凝胶界面热导的影响。从模拟中可以得出结论,缺陷纳米片是增强PEGDA水凝胶热传递的优异增强剂,且这与水含量无关。这些具有增强热导率的含生物相容性氮化硼纳米颗粒(BNNP)的PEGDA水凝胶,在解决局部过热组织(如软骨置换)方面是很有前景的材料。它们在组织工程、药物递送、生物传感器和烧伤治疗等生物医学应用中可能具有广泛的用途。

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