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通过控制缔合交换速率定制动态水凝胶。

Tailoring Dynamic Hydrogels by Controlling Associative Exchange Rates.

作者信息

Zhang Vivian, Accardo Joseph V, Kevlishvili Ilia, Woods Eliot F, Chapman Steven J, Eckdahl Christopher T, Stern Charlotte L, Kulik Heather J, Kalow Julia A

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, IL, USA.

Department of Chemical Engineering, Massachusetts Institute of Technology, 25 Ames Street, Cambridge, MA, USA.

出版信息

Chem. 2023 Aug 10;9(8):2298-3317. doi: 10.1016/j.chempr.2023.05.018. Epub 2023 Jun 7.

Abstract

Dithioalkylidenes are a newly-developed class of conjugate acceptors that undergo thiol exchange via an associative mechanism, enabling decoupling of key material properties for sustainability, biomedical, and sensing applications. Here, we show that the exchange rate is highly sensitive to the structure of the acceptor and tunable over four orders of magnitude in aqueous environments. Cyclic acceptors exchange rapidly, from 0.95 to 15.6 Ms, while acyclic acceptors exchange between 3.77x10 and 2.17x10 Ms. Computational, spectroscopic, and structural data suggest that cyclic acceptors are more reactive than their acyclic counterparts because of resonance stabilization of the tetrahedral exchange intermediate. We parametrize molecular reactivity with respect to computed descriptors of the electrophilic site and leverage this insight to design a compound with intermediate characteristics. Lastly, we incorporate this dynamic bond into hydrogels and demonstrate that the characteristic stress relaxation time () is directly proportional to molecular .

摘要

二硫代亚烷基是一类新开发的共轭受体,它们通过缔合机制进行硫醇交换,从而能够将关键材料特性解耦,以用于可持续性、生物医学和传感应用。在此,我们表明,在水性环境中,交换速率对受体结构高度敏感,且可在四个数量级范围内调节。环状受体的交换速度很快,为0.95至15.6 M/s,而非环状受体的交换速度在3.77×10⁻⁴至2.17×10⁻² M/s之间。计算、光谱和结构数据表明,由于四面体交换中间体的共振稳定作用,环状受体比其非环状对应物更具反应性。我们根据亲电位点的计算描述符对分子反应性进行参数化,并利用这一见解设计出具有中间特性的化合物。最后,我们将这种动态键引入水凝胶中,并证明特征应力松弛时间()与分子直接成正比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f57/10545375/7bd16e6c8914/nihms-1904148-f0001.jpg

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