Cargando…

Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption

Triarylboranes-based pure organic room-temperature phosphorescence (RTP) materials are rarely investigated because of their large steric hindrance and the electron defect of the boron atom. As a result, creating functional triarylborane RTP materials is difficult. Herein, we report the first photo-a...

Descripción completa

Detalles Bibliográficos
Autores principales: Ding, Huangting, Sun, Yitong, Tang, Meng, Wen, Jingyi, Yue, Shiwen, Peng, Ye, Li, Fei, Zheng, Liyan, Wang, Suning, Shi, Yonggang, Cao, Qiue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10155920/
https://www.ncbi.nlm.nih.gov/pubmed/37152259
http://dx.doi.org/10.1039/d3sc00568b
_version_ 1785036429942849536
author Ding, Huangting
Sun, Yitong
Tang, Meng
Wen, Jingyi
Yue, Shiwen
Peng, Ye
Li, Fei
Zheng, Liyan
Wang, Suning
Shi, Yonggang
Cao, Qiue
author_facet Ding, Huangting
Sun, Yitong
Tang, Meng
Wen, Jingyi
Yue, Shiwen
Peng, Ye
Li, Fei
Zheng, Liyan
Wang, Suning
Shi, Yonggang
Cao, Qiue
author_sort Ding, Huangting
collection PubMed
description Triarylboranes-based pure organic room-temperature phosphorescence (RTP) materials are rarely investigated because of their large steric hindrance and the electron defect of the boron atom. As a result, creating functional triarylborane RTP materials is difficult. Herein, we report the first photo-activated RTP materials with lifetimes/quantum yields ≤0.18 s/6.83% based on donor (D)–π–acceptor (A) from methylene carbazole-functionalized aminoborane (BN)-doped polymethyl methacrylate (BN-o-Met-Cz@PMMA) under 365 nm UV irradiation (30 s). Incredibly, BN-o-Met-Cz@PMMA films exhibited unprecedented photo-activated RTP dual–response properties (e.g., air + 365 nm: τ(P) = 0.18 s, Φ(P) = 6.83%; N(2) + 365 nm: τ(P) = 0.42 s, Φ(P) = 17.34%). Intriguingly, the BN (D–π–A) system demonstrated good versatility for photo-activated RTP whether the electron-donating group or electron-withdrawing group was placed in the ortho (meta)-position of the B atom. As a result, a series of photo-activated single-molecule organic RTP materials with multi-color emission, high quantum yields, and ultra-long lifetimes can be prepared rapidly. BN-X@PMMA films showed broad application prospects for information encryption, data erasure, anti-counterfeiting, and water resistance. Our method provides new strategies for the design, synthesis, and application of RTP materials, thereby enriching the types of organic RTP materials and facilitating further developments in this area.
format Online
Article
Text
id pubmed-10155920
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-101559202023-05-04 Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption Ding, Huangting Sun, Yitong Tang, Meng Wen, Jingyi Yue, Shiwen Peng, Ye Li, Fei Zheng, Liyan Wang, Suning Shi, Yonggang Cao, Qiue Chem Sci Chemistry Triarylboranes-based pure organic room-temperature phosphorescence (RTP) materials are rarely investigated because of their large steric hindrance and the electron defect of the boron atom. As a result, creating functional triarylborane RTP materials is difficult. Herein, we report the first photo-activated RTP materials with lifetimes/quantum yields ≤0.18 s/6.83% based on donor (D)–π–acceptor (A) from methylene carbazole-functionalized aminoborane (BN)-doped polymethyl methacrylate (BN-o-Met-Cz@PMMA) under 365 nm UV irradiation (30 s). Incredibly, BN-o-Met-Cz@PMMA films exhibited unprecedented photo-activated RTP dual–response properties (e.g., air + 365 nm: τ(P) = 0.18 s, Φ(P) = 6.83%; N(2) + 365 nm: τ(P) = 0.42 s, Φ(P) = 17.34%). Intriguingly, the BN (D–π–A) system demonstrated good versatility for photo-activated RTP whether the electron-donating group or electron-withdrawing group was placed in the ortho (meta)-position of the B atom. As a result, a series of photo-activated single-molecule organic RTP materials with multi-color emission, high quantum yields, and ultra-long lifetimes can be prepared rapidly. BN-X@PMMA films showed broad application prospects for information encryption, data erasure, anti-counterfeiting, and water resistance. Our method provides new strategies for the design, synthesis, and application of RTP materials, thereby enriching the types of organic RTP materials and facilitating further developments in this area. The Royal Society of Chemistry 2023-03-28 /pmc/articles/PMC10155920/ /pubmed/37152259 http://dx.doi.org/10.1039/d3sc00568b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ding, Huangting
Sun, Yitong
Tang, Meng
Wen, Jingyi
Yue, Shiwen
Peng, Ye
Li, Fei
Zheng, Liyan
Wang, Suning
Shi, Yonggang
Cao, Qiue
Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
title Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
title_full Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
title_fullStr Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
title_full_unstemmed Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
title_short Time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
title_sort time-dependent photo-activated aminoborane room-temperature phosphorescence materials with unprecedented properties: simple, versatile, multicolor-tuneable, water resistance, optical information writing/erasing, and multilevel data encryption
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10155920/
https://www.ncbi.nlm.nih.gov/pubmed/37152259
http://dx.doi.org/10.1039/d3sc00568b
work_keys_str_mv AT dinghuangting timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT sunyitong timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT tangmeng timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT wenjingyi timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT yueshiwen timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT pengye timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT lifei timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT zhengliyan timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT wangsuning timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT shiyonggang timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption
AT caoqiue timedependentphotoactivatedaminoboraneroomtemperaturephosphorescencematerialswithunprecedentedpropertiessimpleversatilemulticolortuneablewaterresistanceopticalinformationwritingerasingandmultileveldataencryption