论文标题

从植物细胞支架中生长表型控制的语音材料

Growing Phenotype-controlled Phononic Materials from Plant Cells Scaffolds

论文作者

Ghanem, Maroun Abi, Khoryati, Liliane, Behrou, Reza, Khanolkar, Amey, Raetz, Samuel, Allein, Florian, Boechler, Nicholas, Dehoux, Thomas

论文摘要

生物复合材料具有自我修复的特性,生物相容性,对外部刺激的高反应性以及多功能性,部分原因是它们的复杂,分层的微观结构。这样的材料可以廉价地生长,并从自下而上进行自组装,从而为微型和纳米设备提供民主化,可持续的制造路线。尽管已经显示出生物复合材料融合了丰富的光子结构,但它们的声音特性迄今仍未探索。在这项研究中,我们证明了以微米厚的脱细胞洋葱细胞支架形式形式的生物复合材料作为有机语音材料的表现,并且存在带隙的存在,该带隙禁止在选定的频率范围内传播弹性波。我们表明,洋葱细胞的语音特性可以表型调节,并预测这些发现将产生新的生物学衍生的“绿色”和遗传量身定制的语音材料。

Biological composites offer self-healing properties, biocompatibility, high responsivity to external stimuli, and multifunctionality, due, in part, to their complex, hierarchical microstructure. Such materials can be inexpensively grown, and self-assembled from the bottom up, enabling democratized, sustainable manufacturing routes for micro- and nano-devices. While biological composites have been shown to incorporate rich photonic structures, their phononic properties have hitherto remained unexplored. In this study, we demonstrate that biological composites in the form of micron-thick decellularized onion cell scaffolds behave as an organic phononic material, with the presence of band gaps forbidding the propagation of elastic waves in select frequency ranges. We show that the onion cells' phononic properties can be phenotypically tuned, and anticipate these findings will yield new biologically-derived, "green", and genetically tailorable phononic materials.

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