2017
DOI: 10.1021/acs.jpclett.7b00503
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H-Aggregates Granting Crystallization-Induced Emissive Behavior and Ultralong Phosphorescence from a Pure Organic Molecule

Abstract: Solid-state luminescent materials with long lifetimes are the subject of ever-growing interest from both a scientific and a technological point of view. However, when dealing with organic compounds, the achievement of highly efficient materials is limited by aggregation-caused quenching (ACQ) phenomena on one side and by ultrafast deactivation of the excited states on the other. Here, we report on a simple organic molecule, namely, cyclic triimidazole (CHN), 1, showing crystallization-induced emissive (CIE) be… Show more

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Cited by 184 publications
(187 citation statements)
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References 19 publications
(30 reference statements)
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“…In this regard, we have recently reported on the photophysical properties of triimidazo[1,2‐ a :1′,2′‐ c :1′′,2′′‐ e ][1,3,5]triazine ( TT ), which displays crystallization‐induced (CIE) and mechanochromic emission, together with RTUP under ambient conditions due to H aggregation . In addition we investigated the possibility of modulating its phosphorescence by introducing into the molecule (intrinsic effect) a halogen atom (Br or I) or by exploiting specific intermolecular interactions (extrinsic effect) based on halogen bonding with other molecules of the same type (one component) or a different type (two‐component for example, in co‐crystals)…”
Section: Introductionmentioning
confidence: 99%
“…In this regard, we have recently reported on the photophysical properties of triimidazo[1,2‐ a :1′,2′‐ c :1′′,2′′‐ e ][1,3,5]triazine ( TT ), which displays crystallization‐induced (CIE) and mechanochromic emission, together with RTUP under ambient conditions due to H aggregation . In addition we investigated the possibility of modulating its phosphorescence by introducing into the molecule (intrinsic effect) a halogen atom (Br or I) or by exploiting specific intermolecular interactions (extrinsic effect) based on halogen bonding with other molecules of the same type (one component) or a different type (two‐component for example, in co‐crystals)…”
Section: Introductionmentioning
confidence: 99%
“…Single crystal X-rayd iffraction results indicate that the chromophore with iodide counterion (PYI) exhibits the highest efficiency maybe due to the halogen-bond interactions.S ignificantly,t he nanosupramolecular assembly of PY chloride complexation with the cucurbit[6]uril gives agreatly enhanced phosphorescent quantum yield up to 81.2 % in ambient. [11] On the other hand, supramolecular approach have been used extensively to construct functional materials by complexing or assembly.N oncovalent interactions,s uch as host-guest interaction, [12] hydrogen bonding, [13] p-p stacking [14] can alter the properties of guests greatly.Recently,Huang and co-workers reported asupramolecular strategy to enhance the efficiency (phosphorescence quantum yield 24.3 %) and extend the lifetime of phosphorescence by constructing crystalline framework. This supramolecular assembly concept with counterions effect provides anovel approach for the improvement of RTP.…”
mentioning
confidence: 99%
“…These data illustrate the obvious:while there is, of course,n ol inear correlation between yield and lifetime, ah igh F is much harder to achieve if phosphorescence is persistent (3)than if lifetimes are in or below the millisecond range (1, 2), where it can more easily compete with non-radiative deactivation. [16] In general, electronic transitions between non-coplanar (orthogonal or tilted) orbitals are necessary to allow for spinorbit coupling (SOC), [17,18] but the vast majority of polycyclic aromatic compounds do not present this kind of geometry. [12] Innovative approaches for the improvement of RTPv ia intermolecular interactions are crystallization-induced phosphorescence, [9] halogen bonding in co-crystals, [13] aggregation-induced ISC, [14] complexationinduced RTPi ns olution, [15] and emission from H-aggregates.…”
mentioning
confidence: 99%
“…Short-lived RTPwith F near unity has been obtained with Ir and Pt complexes [11] and with abenzene bearing six arylthio substituents. [16] In general, electronic transitions between non-coplanar (orthogonal or tilted) orbitals are necessary to allow for spinorbit coupling (SOC), [17,18] but the vast majority of polycyclic aromatic compounds do not present this kind of geometry. [16] In general, electronic transitions between non-coplanar (orthogonal or tilted) orbitals are necessary to allow for spinorbit coupling (SOC), [17,18] but the vast majority of polycyclic aromatic compounds do not present this kind of geometry.…”
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confidence: 99%
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