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Progress in Bioinspired Dry and Wet Gradient Materials from Design Principles to Engineering Applications

机译:从设计原则到工程应用的生物透露干燥和湿梯度材料的进展

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摘要

Nature does nothing in vain. Through millions of years of revolution, living organisms have evolved hierarchical and anisotropic structures to maximize their survival in complex and dynamic environments. Many of these structures are intrinsically heterogeneous and often with functional gradient distributions. Understanding the convergent and divergent gradient designs in the natural material systems may lead to a new paradigm shift in the development of next-generation high-performance bio-ano-materials and devices that are critically needed in energy, environmental remediation, and biomedical fields. Herein, we review the basic design principles and highlight some of the prominent examples of gradient biological materials/structures discovered over the past few decades. Interestingly, despite the anisotropic features in one direction (i.e., in terms of gradient compositions and properties), these natural structures retain certain levels of symmetry, including point symmetry, axial symmetry, mirror symmetry, and 3D symmetry. We further demonstrate the state-of-the-art fabrication techniques and procedures in making the biomimetic counterparts. Some prototypes showcase optimized properties surpassing those seen in the biological model systems. Finally, we summarize the latest applications of these synthetic functional gradient materials and structures in robotics, biomedical, energy, and environmental fields, along with their future perspectives. This review may stimulate scientists, engineers, and inventors to explore this emerging and disruptive research methodology and endeavors.
机译:自然无所事事。通过数百万年的革命,生物体已经进化了等级和各向异性结构,以最大限度地在复杂和动态环境中的生存。这些结构中的许多结构是内在的异质和经常具有功能梯度分布。了解天然材料系统中的收敛和发散梯度设计可能导致新的范式转变在能量,环境修复和生物医学领域的下一代高性能生物/纳米材料和设备的开发中的开发。在此,我们审查了基本设计原则,并突出了过去几十年发现的渐变生物材料/结构的一些突出示例。有趣的是,尽管在一个方向上有各向异性特征(即,在梯度组成和性质方面),这些天然结构保持某些对称水平,包括点对称性,轴对称性,镜像对称和3D对称性。我们进一步展示了制造生物摩托反应器的最先进的制造技术和程序。一些原型展示优化的性质超过了生物模型系统中看到的特性。最后,我们总结了这些合成功能梯度材料和结构在机器人,生物医学,能源和环境领域的最新应用以及未来的观点。该审查可以刺激科学家,工程师和发明人,探索这种新兴和破坏性的研究方法和努力。

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