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首页> 外文期刊>Global Challenges >A Theoretical Study on Terpene‐Based Natural Deep Eutectic Solvent: Relationship between Viscosity and Hydrogen‐Bonding Interactions
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A Theoretical Study on Terpene‐Based Natural Deep Eutectic Solvent: Relationship between Viscosity and Hydrogen‐Bonding Interactions

机译:基于萜烯的自然深凝胶溶剂的理论研究:粘度与氢键相互作用的关系

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The aim of this work is to shed light on the origins of unique properties by studying the relationship between viscosity and hydrogen‐bonding interactions of terpene‐based natural deep eutectic solvents (NADES). Five systems including camphor/formic acid, menthol/acetic acid, menthol/β‐citronellol, menthol/lactic acid, and thymol/β‐citronellol are prepared (molar ratio 1:1). Their structures and nature of the associated hydrogen bonds are investigated through multiple methods and theories. The viscosity of NADES is consistent with the product of hydrogen‐bond number and lifetime. Through visualization of non‐covalent interactions, terpene‐acid‐based NADES with single sites show the lowest viscosity among the studied systems because of weak and unstable hydrogen bonding. Inversely, multi‐site terpene‐acid‐based NADES possess relatively high viscosity. Owing to the stability of hydrogen bonds in the network, the terpene‐terpene‐based system is in the middle level of viscosity. In‐depth analysis of these hydrogen bonds shows that they can be classified as “weak to medium” and are mainly derived from electrostatic interactions. Moreover, there is an obvious connection between viscosity and hydrogen‐bonding strength (integrated core‐valence bifurcation index) in the networks. The discovery of intrinsic rules between viscosity and hydrogen‐bonding interactions is beneficial for the design of novel low‐viscosity NADES in the future. The structures and inner nature of the hydrogen‐bond network of different systems are studied by multiple methods. The discovery of intrinsic rules between viscosity and hydrogen‐bonding interactions is beneficial for the rational and effective design of novel low‐viscosity natural deep eutectic solvents.
机译:通过研究萜烯类自然深对共晶溶剂(NADE)的粘度和氢键相互作用之间的关系,这项工作的目的是在独特性质的起源上。制备包括樟脑/甲酸,薄荷醇/乙酸,薄荷醇/β-香茅醇,薄荷醇/乳酸和胸腺醇/β-香茅肠的五种系统(摩尔比1:1)。通过多种方法和理论研究了它们的相关氢键的结构和性质。 NADE的粘度与氢键数和寿命的产物一致。通过非共价相互作用的可视化,由于氢粘合弱和不稳定的氢粘合,具有单个位点的萜烯酸的NADE显示了所研究的系统中的最低粘度。成反比,基于多场萜烯酸的NADE具有相对高的粘度。由于网络中氢键的稳定性,基于萜烯的系统是粘度的中间水平。对这些氢键的深入分析表明它们可以被分类为“弱到培养基”并且主要来自静电相互作用。此外,网络中粘度和氢粘合强度(集成核心价分叉指数)之间存在明显的连接。粘度和氢键相互作用之间的内在规则的发现是有益于未来设计新的低粘度nades。通过多种方法研究了不同系统的氢键网络的结构和内在性质。粘度和氢键相互作用之间的内在规则的发现是有利于新型低粘度天然深层共晶溶剂的理性和有效设计。

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