Generation of supramolecular microcapsules by oxidative covalent polymerization of a ditopic supramolecular building block
文献信息
Nabarun Roy, Eric Buhler, Jean-Marie Lehn
We describe a novel approach to the generation of a supramolecular polymer and its assembly into microcapsules by the aerial oxidation of a supramolecular building block. It involves the initial build-up of a ditopic supramolecular component by hydrogen bonding association of two complementary subunits, followed by its covalent polymerization through oxidative formation of C–C linkages. The supramolecular component itself was selectively formed from a dynamic covalent library of hydrazone isomers by target specific amplification of a single library constituent. The polymer obtained condenses into supramolecular aggregates of micrometric size and capsular-type morphology, presenting multilayered walls, which have been characterized by STEM, SEM and AFM imaging methods. The present design methodology implements the covalent polycondensation of non-covalent monomers towards the formation of supramolecular polymers, in a sequence opposite to the usual non-covalent polyassociation of covalent complementary monomers. It can be envisaged as a proactive step towards forming adaptive smart materials through manipulation of the sequence of supramolecular/non-covalent and molecular/covalent steps for the generation of supramolecular polymers by suitable selection of receptor and substrate moieties.
相关文献
Carrier relaxation dynamics in type-II ZnO/CdSe quantum dot heterostructures
Sandeep Verma
DOI: 10.1039/C7CP04069E
Bias induced spin transitions of spin crossover molecules: the role of charging effect
DOI: 10.1039/C6CP08265C
The transient manifold structure of the p53 extreme C-terminal domain: insight into disorder, recognition, and binding promiscuity by molecular dynamics simulations
E. Fadda, M. G. Nixon
DOI: 10.1039/C7CP02485A
The mechanism of excimer formation: an experimental and theoretical study on the pyrene dimer
Joscha Hoche, Hans-Christian Schmitt, Alexander Humeniuk, Ingo Fischer, Roland Mitrić, Merle I. S. Röhr
DOI: 10.1039/C7CP03990E
Defects in crystalline PVDF: a density functional theory-density functional tight binding study
Saeid Arabnejad, Koichi Yamashita, Sergei Manzhos
DOI: 10.1039/C7CP00510E
Modelling pH and potential in dynamic structures of the water/Pt(111) interface on the atomic scale
Martin Hangaard Hansen, Anders Nilsson, Jan Rossmeisl
DOI: 10.1039/C7CP03576D
Solid surface vs. liquid surface: nanoarchitectonics, molecular machines, and DNA origami
Taizo Mori, Waka Nakanishi, Jonathan P. Hill
DOI: 10.1039/C7CP02280H
Kinetic fragility and structure of lithium borophosphate glasses analysed by 1D/2D NMR
Laura Muñoz-Senovilla, Gregory Tricot, Francisco Muñoz
DOI: 10.1039/C7CP04171C
Low temperature conductivity and ion dynamics in silver iodide–silver metaphosphate glasses
DOI: 10.1039/C7CP03695G
Effect of composition and coating on the interparticle interactions and magnetic hardness of MFe2O4 (M = Fe, Co, Zn) nanoparticles
M. Virumbrales-del Olmo, A. Delgado-Cabello, A. Andrada-Chacón, J. Sánchez-Benítez, E. Urones-Garrote, V. Blanco-Gutiérrez, M. J. Torralvo, R. Sáez-Puche
DOI: 10.1039/C6CP08743D
您可能还喜欢
(3-氨苯基)环丙基甲酮(CAS号:162174-75-6)的主要用途是什么?
(3-氨苯基)环丙基甲酮主要用于合成化学中间体,特别是在药物化学领域作为原料。它还可以用于有机合成反应中,作为催化剂或反应物。
如何储存亚胺菌(CAS号:136470-79-6)?
亚胺菌应储存在干燥、阴凉处,避免直接暴露于光线下。建议使用密封容器储存,防止吸潮和污染。具体的储存条件应参考产品的安全数据表(MSDS)或药品说明书。
2-氯-2,2-二氟乙酰胺(CAS号:354-28-9)应用于哪些行业?
2-氯-2,2-二氟乙酰胺在医药、聚合物、传感器、半导体等领域有广泛应用。在医药领域,它作为中间体用于合成其他药物;在聚合物领域,用作聚合引发剂或稳定剂;在传感...
处理4-甲基-3-硝基-1,1-联苯(CAS号:53812-68-3)时应注意哪些实验室安全事项?
在处理4-甲基-3-硝基-1,1-联苯时,应佩戴手套、护目镜和实验室外套等个人防护装备(PPE),确保在通风橱中操作以减少吸入风险。若发生泄露,应立即使用沙子或...
(2S)-羟基(苯基)乙酸 (2R)-N-苄基-1-(4-甲氧基苯基)丙-2-胺盐(CAS号:188690-84-8)应用于哪些行业?
该化合物广泛应用于医药、聚合物和半导体行业。在医药领域,它是某些药物中间体的重要组成部分;在聚合物领域,可用作增塑剂;在半导体行业,可用于制造光刻胶。
在合成中是否有芬苯哒唑砜-D3标准品(CAS号:1228182-49-7)的替代品?
芬苯哒唑砜-D3标准品的替代品可能包括类似的苯并咪唑类化合物,如芬苯哒唑本身或其非同位素标记版本。这些替代品在结构上与芬苯哒唑砜-D3相似,但在具体应用中需进行...
2-氟-4-硝基苯乙酸(CAS号:315228-19-4)通常如何合成?
2-氟-4-硝基苯乙酸可以通过一系列化学反应合成,通常是从4-氟苯胺开始,首先进行硝化反应生成4-氟-2-硝基苯胺,然后进行乙酰化反应得到目标产物。具体的合成步...
2-氟-4-甲氧基苯乙酸(CAS号:883531-28-0)通常如何合成?
2-氟-4-甲氧基苯乙酸通常通过将4-甲氧基苯乙酸与氟化试剂(如氟化氰)反应来合成。反应通常在无水条件下进行,使用催化剂如六氟磷酸锂或四氟硼酸锂以提高选择性和产...
什么是4SC 202;4SC202(CAS号:1186222-89-8)?
4SC 202;4SC202是一种化学化合物,其化学名称为(2E)-N-(2-氨基苯基)-3-(1-{[4-(1-甲基-1H-吡唑-4-基)苯基]磺酰基}-1H...
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.










![[4-Chloro-3-(diethylcarbamoyl)phenyl]boronic acid structure [4-Chloro-3-(diethylcarbamoyl)phenyl]boronic acid structure](https://cnstatic.chemtradehub.com/structs/871/871332-68-2-0e3b.webp)



