2017
DOI: 10.1002/ijch.201700109
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Stimuli‐Responsive Cucurbit[n]uril‐Mediated Host‐Guest Complexes on Surfaces

Abstract: Supramolecular functional surfaces are at the heart of many materials and medical applications. Increasing interest can be seen for devising new supramolecular functionalization strategies of surfaces. In this review we place particular emphasis on the use of cucurbit[n]urilmediated host-guest complexation as surface functionalization strategy. The state of the art of cucurbit[n]uril-mediated host-guest complexes on surfaces is reviewed. Cucurbit [n] urils (CB[n]) are able to form strong host-guest complexe… Show more

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Cited by 22 publications
(19 citation statements)
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References 115 publications
(272 reference statements)
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“…For example, most of the complicated supramolecular architectures, such as rotaxanes, catenanes, molecular shuttles, molecular switches, molecular machines, supramolecular polymers, supramolecular amphiphiles, and so on, are based on the host−guest chemistry of these macrocycles. They have been also employed to modify the surface properties of metal nanoparticles via noncovalent host−guest interactions, covering their applications in drug delivery, highly sensitive sensors, selective catalysis, and so on.…”
Section: Introductionmentioning
confidence: 99%
“…For example, most of the complicated supramolecular architectures, such as rotaxanes, catenanes, molecular shuttles, molecular switches, molecular machines, supramolecular polymers, supramolecular amphiphiles, and so on, are based on the host−guest chemistry of these macrocycles. They have been also employed to modify the surface properties of metal nanoparticles via noncovalent host−guest interactions, covering their applications in drug delivery, highly sensitive sensors, selective catalysis, and so on.…”
Section: Introductionmentioning
confidence: 99%
“…84 Modification of biosensors by CB[n] anchoring offers new opportunities to generate stimulusresponsive surfaces in a reversible manner. 85 Up to date, two examples of CB[n]-functionalized surfaces as analytical tools for prostate and breast cancer diagnostics have been reported. In 2016, F. Zhang and co-workers developed an electrochemical sensing platform on the basis of a CB [7]-modified electrode for the detection of breast cancer susceptibility gene (BRCA) DNA (Scheme 7a).…”
Section: Cb-assisted Supramolecular Sensing and Imagingmentioning
confidence: 99%
“…CB[ n ]s are widely employed in catalysis, drug delivery, nanoparticle functionalization, supramolecular chemistry, and in mediating different chemical reactions [6873]. In terms of its usage in 129 Xe NMR and MRI, there are few reports in which they have been successfully used for different applications.…”
Section: Synthetic Nanosystems For Hypercest Applicationsmentioning
confidence: 99%