Sheehan Fahmeed, Sementa Deborah, Jain Ankit, Kumar Mohit, Tayarani-Najjaran Mona, Kroiss Daniela, Ulijn Rein V
Advanced Science Research Center (ASRC) at the Graduate Center City University of New York 85 St. Nicholas Terrace New York, New York 10031, United States.
Department of Chemistry, Hunter College City University of New York 695 Park Avenue, New York, New York 10065, United States.
Chem Rev. 2021 Nov 24;121(22):13869-13914. doi: 10.1021/acs.chemrev.1c00089. Epub 2021 Sep 14.
Peptide-based supramolecular systems chemistry seeks to mimic the ability of life forms to use conserved sets of building blocks and chemical reactions to achieve a bewildering array of functions. Building on the design principles for short peptide-based nanomaterials with properties, such as self-assembly, recognition, catalysis, and actuation, are increasingly available. Peptide-based supramolecular systems chemistry is starting to address the far greater challenge of systems-level design to access complex functions that emerge when multiple reactions and interactions are coordinated and integrated. We discuss key features relevant to systems-level design, including regulating supramolecular order and disorder, development of active and adaptive systems by considering kinetic and thermodynamic design aspects and combinatorial dynamic covalent and noncovalent interactions. Finally, we discuss how structural and dynamic design concepts, including preorganization and induced fit, are critical to the ability to develop adaptive materials with adaptive and tunable photonic, electronic, and catalytic properties. Finally, we highlight examples where multiple features are combined, resulting in chemical systems and materials that display adaptive properties that cannot be achieved without this level of integration.
基于肽的超分子体系化学旨在模拟生命形式利用一组保守的构建单元和化学反应来实现一系列令人眼花缭乱的功能的能力。基于具有自组装、识别、催化和驱动等特性的短肽基纳米材料的设计原则日益丰富。基于肽的超分子体系化学开始应对系统级设计这一更大的挑战,以实现当多个反应和相互作用相互协调和整合时出现的复杂功能。我们讨论了与系统级设计相关的关键特征,包括调节超分子的有序和无序、通过考虑动力学和热力学设计方面以及组合动态共价和非共价相互作用来开发活性和自适应系统。最后,我们讨论了结构和动态设计概念,包括预组织和诱导契合,对于开发具有自适应和可调谐光子、电子和催化特性的自适应材料的能力至关重要。最后,我们强调了多个特征相结合的例子,这些例子产生了化学系统和材料,展示了没有这种整合水平就无法实现的自适应特性。