2016
DOI: 10.1021/jacs.6b11057
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Halogen-Assisted Piezochromic Supramolecular Assemblies for Versatile Haptic Memory

Abstract: Sensory memory is capable of recording information and giving feedback based on external stimuli. Haptic memory in particular can retain the sensation of the interaction between the human body and the environment and help humans to describe the physical quantities in their environment and manipulate objects in daily activities. Although sensitive and accurate tactile sensors have been produced on optical and electronic devices, their rigorous operation and equipment requirements seriously limit their further a… Show more

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Cited by 157 publications
(116 citation statements)
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“…As shown in Scheme , the anthracene as a starting material reacted with paraformaldehyde to afford 9,10‐bis(chloromethyl)anthracene according to the literature method . Then 9,10‐bis(chloromethyl)anthracene was treated by diethanolamine to form 9,10‐bis[di(2′‐hydroxylethyl)aminomethyl]anthracene.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…As shown in Scheme , the anthracene as a starting material reacted with paraformaldehyde to afford 9,10‐bis(chloromethyl)anthracene according to the literature method . Then 9,10‐bis(chloromethyl)anthracene was treated by diethanolamine to form 9,10‐bis[di(2′‐hydroxylethyl)aminomethyl]anthracene.…”
Section: Resultsmentioning
confidence: 99%
“…N ‐Ethylimidazole and 9,10‐bis(chloromethyl)anthracene were prepared according to the literature methods. All the reagents for synthesis and analyses were of analytical grade and used without further purification.…”
Section: Methodsmentioning
confidence: 99%
“…Zhao et al [98] developed two piezochromic assemblies based on pyridylvinylanthracenes (p-PVA) and F4DIB for haptic memory (Figure 8a). Zhao et al [98] developed two piezochromic assemblies based on pyridylvinylanthracenes (p-PVA) and F4DIB for haptic memory (Figure 8a).…”
Section: Stimuli-responsive Luminescent Cocrystalsmentioning
confidence: 99%
“…[4,95] Such dynamic materials can provide advantages because selected properties (such as luminescence and shape) can be turned "on" and "off" reversibly,and may lead to applications in, for example, electronic display and information storage systems,s mart sensors/switches,o ptical switching devices,m emory devices,a nd nonlinear optics. [96][97][98] Up to now,e ven if the co-crystals have been largely used to change their static properties, [99] how to further investigate dynamic multifunctional materials remains ac hallenge.…”
Section: Angewandte Chemiementioning
confidence: 99%
“…[2][3][4] Piezochromic luminescent materials have received considerable interest in recent years in view of their potentiala pplicationsi n sensors,m emoryc hips, camouflage, optoelectronic devices, and so forth. [5][6][7][8] However,s tudies on piezochromic materials remain inadequate due to the absence of an effective mechanism to illustrate the close correlation between the changes in molecular packinga nd the correspondingl uminescence properties. Therefore, the ability to dynamically control the molecular aggregation state and the consequent fluorescencec olor and/ori ntensity is very important to developn ew piezochromic luminescentmaterials.…”
Section: Introductionmentioning
confidence: 99%