Literature DB >> 33283336

Multifunctional Reversible Self-Assembled Structures of Cellulose-Derived Phase-Change Nanocrystals.

Yonggui Wang1, Zhe Qiu1, Zhen Lang1, Yanjun Xie1, Zefang Xiao1, Haigang Wang1, Daxin Liang1, Jian Li1, Kai Zhang2.   

Abstract

Owing to advantageous properties attributed to well-organized structures, multifunctional materials with reversible hierarchical and highly ordered arrangement in solid-state assembled structures have drawn tremendous interest. However, such materials rarely exist. Based on the reversible phase transition of phase-change materials (PCMs), phase-change nanocrystals (C18-UCNCs) are presented herein, which are capable of self-assembling into well-ordered hierarchical structures. C18-UCNCs have a core-shell structure consisting of a cellulose crystalline core that retains the basic structure and a soft shell containing octadecyl chains that allow phase transition. The distinct core-shell structure and phase transition of octadecyl chains allow C18-UCNCs to self-assemble into flaky nano/microstructures. These self-assembled C18-UCNCs exhibit efficient thermal transport and light-to-thermal energy conversion, and thus are promising for thermosensitive imaging. Specifically, flaky self-assembled nano/microstructures with manipulable surface morphology, surface wetting, and optical properties are thermoreversible and show thermally induced self-healing properties. By using phase-change nanocrystals as a novel group of PCMs, reversible self-assembled multifunctional materials can be engineered. This study proposes a promising approach for constructing self-assembled hierarchical structures by using phase-change nanocrystals and thereby significantly expands the application of PCMs.
© 2020 The Authors. Advanced Materials published by Wiley-VCH GmbH.

Entities:  

Keywords:  cellulose; core-shell structure; phase-change nanocrystals; thermal reversibility; thermalimaging

Year:  2020        PMID: 33283336     DOI: 10.1002/adma.202005263

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  3 in total

Review 1.  Flexible engineering of advanced phase change materials.

Authors:  Piao Cheng; Zhaodi Tang; Yan Gao; Panpan Liu; Changhui Liu; Xiao Chen
Journal:  iScience       Date:  2022-04-08

2.  Synthesis and Properties of Shape-Stabilized Phase Change Materials Based on Poly(triallyl isocyanurate-silicone)/n-Octadecane Composites.

Authors:  Xi Chen; Xuelin Huang; Tong-Yu Shi; Jia-Xin Wang; Xin-Ru Yuan; Hao Huang; Jiahong Wang; Rui He; Xue-Feng Yu
Journal:  ACS Omega       Date:  2022-04-21

3.  Natural wood-derived free-standing films as efficient and stable separators for high-performance lithium ion batteries.

Authors:  Yunlong Yang; Ning Li; Tian Lv; Zilin Chen; Yanan Liu; Keyi Dong; Shaokui Cao; Tao Chen
Journal:  Nanoscale Adv       Date:  2022-03-03
  3 in total

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