Koshani Roya, Pitcher Mica L, Yu Jingyi, Mahajan Christine L, Kim Seong H, Sheikhi Amir
Department of Chemical Engineering, The Pennsylvania State University, University Park, PA, 16802, USA.
Department of Chemistry, The Pennsylvania State University, University Park, PA, 16802, USA.
Nanomicro Lett. 2025 Jan 8;17(1):103. doi: 10.1007/s40820-024-01569-0.
Plant cell wall (CW)-like soft materials, referred to as artificial CWs, are composites of assembled polymers containing micro-/nanoparticles or fibers/fibrils that are designed to mimic the composition, structure, and mechanics of plant CWs. CW-like materials have recently emerged to test hypotheses pertaining to the intricate structure-property relationships of native plant CWs or to fabricate functional materials. Here, research on plant CWs and CW-like materials is reviewed by distilling key studies on biomimetic composites primarily composed of plant polysaccharides, including cellulose, pectin, and hemicellulose, as well as organic polymers like lignin. Micro- and nanofabrication of plant CW-like composites, characterization techniques, and in silico studies are reviewed, with a brief overview of current and potential applications. Micro-/nanofabrication approaches include bacterial growth and impregnation, layer-by-layer assembly, film casting, 3-dimensional templating microcapsules, and particle coating. Various characterization techniques are necessary for the comprehensive mechanical, chemical, morphological, and structural analyses of plant CWs and CW-like materials. CW-like materials demonstrate versatility in real-life applications, including biomass conversion, pulp and paper, food science, construction, catalysis, and reaction engineering. This review seeks to facilitate the rational design and thorough characterization of plant CW-mimetic materials, with the goal of advancing the development of innovative soft materials and elucidating the complex structure-property relationships inherent in native CWs.
植物细胞壁(CW)类软材料,即人工细胞壁,是由含有微/纳米颗粒或纤维/原纤维的组装聚合物组成的复合材料,旨在模仿植物细胞壁的组成、结构和力学性能。最近出现了类似细胞壁的材料,用于检验与天然植物细胞壁复杂的结构-性能关系相关的假设,或制造功能材料。在此,通过提炼主要由植物多糖(包括纤维素、果胶和半纤维素)以及木质素等有机聚合物组成的仿生复合材料的关键研究,对植物细胞壁和类似细胞壁材料的研究进行综述。对植物细胞壁类复合材料的微纳制造、表征技术和计算机模拟研究进行了综述,并简要概述了当前和潜在的应用。微/纳制造方法包括细菌生长和浸渍、层层组装、流延成膜、三维模板微胶囊和颗粒包覆。对于植物细胞壁和类似细胞壁材料的全面力学、化学、形态和结构分析,各种表征技术是必不可少的。类似细胞壁的材料在实际应用中具有多功能性,包括生物质转化、制浆造纸、食品科学、建筑、催化和反应工程。本综述旨在促进植物细胞壁模拟材料的合理设计和全面表征,目标是推动创新软材料的开发,并阐明天然细胞壁固有的复杂结构-性能关系。