Matches in SemOpenAlex for { <https://semopenalex.org/work/W2895816802> ?p ?o ?g. }
- W2895816802 endingPage "17496" @default.
- W2895816802 startingPage "17487" @default.
- W2895816802 abstract "Crystal engineering of three-component crystals with guest-dependent photoluminescence switching, including (i) crystallization-induced emission enhancement, (ii) intermolecular charge-transfer emission, and (iii) room-temperature phosphorescence under ultraviolet irradiation, was demonstrated. This strategy was based on the confinement of aromatic guests in a supramolecular host (denoted as EBPDI-TPFB) composed of 5,5'-(ethyne-1,2-diyl)bis(2-pyridin-3-yl-isoindoline-1,3-dione (EBPDI) with two tris(pentafluorophenyl)borane (TPFB) molecules linked by B-N dative bonds that acted as Lewis pairs. The single-crystal X-ray structures of complexes with eight different guests were collected, revealing that the size and/or shape of the supramolecular host EBPDI-TPFB was modulated by the included guest molecules. The excellent guest inclusion ability of EBPDI-TPFB allowed systematic photoluminescence regulation of the complexes, which exhibited multicolor emissions in the crystalline state. Photoluminescence switching characteristics of the complexes were observed upon removing the guests or mechanical grinding of the crystals. These results indicated that using the host-guest chemistry of multicomponent crystals not only facilitates crystallization, but also can reveal hidden optical functions by combining molecules of interest, which should contribute to the fields of physical chemistry and materials science." @default.
- W2895816802 created "2018-10-26" @default.
- W2895816802 creator A5047849195 @default.
- W2895816802 creator A5058044716 @default.
- W2895816802 creator A5079566028 @default.
- W2895816802 creator A5085058143 @default.
- W2895816802 date "2018-11-21" @default.
- W2895816802 modified "2023-10-17" @default.
- W2895816802 title "Switching of Monomer Fluorescence, Charge‐Transfer Fluorescence, and Room‐Temperature Phosphorescence Induced by Aromatic Guest Inclusion in a Supramolecular Host" @default.
- W2895816802 cites W1432623588 @default.
- W2895816802 cites W1768018281 @default.
- W2895816802 cites W1883426436 @default.
- W2895816802 cites W1962132222 @default.
- W2895816802 cites W1964063925 @default.
- W2895816802 cites W1969360633 @default.
- W2895816802 cites W1974203754 @default.
- W2895816802 cites W1986764614 @default.
- W2895816802 cites W1995673420 @default.
- W2895816802 cites W1995787123 @default.
- W2895816802 cites W2003724879 @default.
- W2895816802 cites W2003732742 @default.
- W2895816802 cites W2004004658 @default.
- W2895816802 cites W2012488984 @default.
- W2895816802 cites W2022328902 @default.
- W2895816802 cites W2031281559 @default.
- W2895816802 cites W2032848891 @default.
- W2895816802 cites W2036095283 @default.
- W2895816802 cites W2041974024 @default.
- W2895816802 cites W2046229549 @default.
- W2895816802 cites W2050206869 @default.
- W2895816802 cites W2051828492 @default.
- W2895816802 cites W2055678742 @default.
- W2895816802 cites W2059205366 @default.
- W2895816802 cites W2060124016 @default.
- W2895816802 cites W2062518914 @default.
- W2895816802 cites W2069114685 @default.
- W2895816802 cites W2069755098 @default.
- W2895816802 cites W2073825494 @default.
- W2895816802 cites W2080553196 @default.
- W2895816802 cites W2084534953 @default.
- W2895816802 cites W2087925881 @default.
- W2895816802 cites W2098961347 @default.
- W2895816802 cites W2099516642 @default.
- W2895816802 cites W2113844511 @default.
- W2895816802 cites W2116275751 @default.
- W2895816802 cites W2121009207 @default.
- W2895816802 cites W2122990865 @default.
- W2895816802 cites W2131953838 @default.
- W2895816802 cites W2132454074 @default.
- W2895816802 cites W2134063343 @default.
- W2895816802 cites W2146201506 @default.
- W2895816802 cites W2147974754 @default.
- W2895816802 cites W2151133865 @default.
- W2895816802 cites W2157192004 @default.
- W2895816802 cites W2157799320 @default.
- W2895816802 cites W2158640749 @default.
- W2895816802 cites W2162493282 @default.
- W2895816802 cites W2173921126 @default.
- W2895816802 cites W2177603935 @default.
- W2895816802 cites W2192072986 @default.
- W2895816802 cites W2293862692 @default.
- W2895816802 cites W2306605917 @default.
- W2895816802 cites W2314737165 @default.
- W2895816802 cites W2323404220 @default.
- W2895816802 cites W2334132519 @default.
- W2895816802 cites W2335428606 @default.
- W2895816802 cites W2335534965 @default.
- W2895816802 cites W2335840205 @default.
- W2895816802 cites W2343479133 @default.
- W2895816802 cites W2407031834 @default.
- W2895816802 cites W2462928535 @default.
- W2895816802 cites W2472679524 @default.
- W2895816802 cites W2530112242 @default.
- W2895816802 cites W2557069352 @default.
- W2895816802 cites W2581084278 @default.
- W2895816802 cites W2599787124 @default.
- W2895816802 cites W2605766422 @default.
- W2895816802 cites W2610608721 @default.
- W2895816802 cites W2614220965 @default.
- W2895816802 cites W2626202805 @default.
- W2895816802 cites W2766975048 @default.
- W2895816802 cites W2771741972 @default.
- W2895816802 cites W2778829993 @default.
- W2895816802 cites W2781150821 @default.
- W2895816802 cites W2782501539 @default.
- W2895816802 cites W2791005564 @default.
- W2895816802 cites W2792900623 @default.
- W2895816802 cites W2796135208 @default.
- W2895816802 cites W4210991126 @default.
- W2895816802 cites W4230566917 @default.
- W2895816802 cites W4236484935 @default.
- W2895816802 cites W4239908155 @default.
- W2895816802 cites W4242584662 @default.
- W2895816802 cites W4245233884 @default.
- W2895816802 cites W4246549105 @default.
- W2895816802 cites W4247019441 @default.
- W2895816802 cites W4253593960 @default.
- W2895816802 doi "https://doi.org/10.1002/chem.201804349" @default.