Woo Ho Young, Lee Da Won, Yoon Tae Yeol, Kim Jong Bae, Chae Ji-Yeon, Paik Taejong
School of Integrative Engineering, Chung-Ang University, Seoul 06974, Korea.
Nanomaterials (Basel). 2021 Jan 14;11(1):204. doi: 10.3390/nano11010204.
In this study, we demonstrate the colloidal synthesis of nearly monodisperse, sub-100-nm phase change material (PCM) nanobeads with an organic n-paraffin core and poly(methylmethacrylate) (PMMA) shell. PCM nanobeads are synthesized via emulsion polymerization using ammonium persulfate as an initiator and sodium dodecylbenzenesulfonate as a surfactant. The highly uniform n-paraffin/PMMA PCM nanobeads are sub-100 nm in size and exhibit superior colloidal stability. Furthermore, the n-paraffin/PMMA PCM nanobeads exhibit reversible phase transition behaviors during the n-paraffin melting and solidification processes. During the solidification process, multiple peaks with relatively reduced phase change temperatures are observed, which are related to the phase transition of n-paraffin in the confined structure of the PMMA nanobeads. The phase change temperatures are further tailored by changing the carbon length of n-paraffin while maintaining the size uniformity of the PCM nanobeads. Sub-100-nm-sized and nearly monodisperse PCM nanobeads can be potentially utilized in thermal energy storage and drug delivery because of their high colloidal stability and solution processability.
在本研究中,我们展示了具有有机正构烷烃核和聚甲基丙烯酸甲酯(PMMA)壳的近单分散、尺寸小于100纳米的相变材料(PCM)纳米珠的胶体合成。PCM纳米珠通过乳液聚合合成,使用过硫酸铵作为引发剂,十二烷基苯磺酸钠作为表面活性剂。高度均匀的正构烷烃/PMMA PCM纳米珠尺寸小于100纳米,并表现出优异的胶体稳定性。此外,正构烷烃/PMMA PCM纳米珠在正构烷烃熔化和凝固过程中表现出可逆的相变行为。在凝固过程中,观察到具有相对降低的相变温度的多个峰,这与PMMA纳米珠受限结构中正构烷烃的相变有关。通过改变正构烷烃的碳链长度,同时保持PCM纳米珠的尺寸均匀性,进一步调整相变温度。尺寸小于100纳米且近单分散的PCM纳米珠因其高胶体稳定性和溶液可加工性,在热能存储和药物递送方面具有潜在应用价值。