【摘 要】
:
Organic room-temperature phosphorescence(ORTP)materials have attracted widespread attention in the fields of OLED,optical imaging and sensors.Herein,we successfully prepared a long afterglow IPA-MA crystalline films using iso-phthalic acid(IPA)and melamin
【机 构】
:
College of Chemistry,Fuzhou University,Fuzhou,Fujian 350002,China;State Key Laboratory of Structural
论文部分内容阅读
Organic room-temperature phosphorescence(ORTP)materials have attracted widespread attention in the fields of OLED,optical imaging and sensors.Herein,we successfully prepared a long afterglow IPA-MA crystalline films using iso-phthalic acid(IPA)and melamine(MA)by a simple drop-casting layer-by-layer(LBL)method,which achieved an ultra-long emission lifetime of up to 1.15 s.The drop-casting LBL method is effective for the fabrication of hydrogen bonded supramolecular crystalline film materials on solid surfaces.The structure of the IPA-MA crystalline film materials is consistent with that grown by hydrothermal method.Importantly,this method eliminates the high temperature and high pressure conditions of conventional hydrothermal methods and could form supramolecular crystalline thin films very well.In addition,the films have great long afterglow performance and the afterglow time can be controlled by altering the number of film layers.Furthermore,this method is successfully applied in the fields of temperature sensors and anti-counterfeiting.These results not only provide the foundation for the design of organic long afterglow films,but also expand the application fields of ORTP materials.
其他文献
By employing a readily available CuCl/DDQ catalyst system,we herein report a direct C(sp3)-H sulfonylation of xanthene derivates with odorless sodium sulfinates.Various 9H-xanthenes,thioxanthenes,and 9,10-dihydroacridines are efficiently transformed into
Botulinum neurotoxins serotype A(BoNT/A)is the deadliest toxins known to humans and the“Category A”agent for bioterrorism.Over the past 20 years,significant efforts have been put forth to develop effective inhibitors of BoNT/A.Unfortunately,few identified
SPASER nanoparticle(NP),with small size,ultranarrow spectral-line and good biocompatibility,is a potential biomedical nanoprobe.However,owning to the striking light absorption capacity of Au-resonator,huge energy could accumulate under strong pump-ing-las
Core-shell nanostructures constituted by a plasmonic core and an ultrathin shell have drawn enormous attentions in enhanced spectroscopies,catal-ysis,energy,and other fields because of their splendid properties such as multifunctionality,stability,and adj
Amyloid-β protein(Aβ)is a fatal cause of Alzheimer\'s disease,which can trigger a series of cytotoxicity by the abnormal aggregation of Aβ in human brain.The strategies for inhibition and disaggregation of Aβ fibrillation are mostly based on the interac
Chiral pools have been commonly utilized as inexpensive and versatile building blocks in organic synthesis.In this account,we provide an overview of our recent synthetic efforts toward polycyclic natural products using chiral natural small molecules(chira
Nano-catalysis plays a vital role in the industrially chemical transformations.The increasingly severe energy crisis and environmental issues spur sci-entists to exploit novel nano-catalysts in diverse fields.It is essential to understand the fundamental
Chemically active motion is ubiquitous in many nature and artificial systems where each unit can move directionally by converting chemical energy into kinetic energy.Since the systems are driven by activity far from equilibrium,many dynamical behaviors fo
针对高光谱图像语义分割中空间信息利用不充分的问题,提出了一种基于多任务学习的语义分割算法,分别为语义分割及基于遥感指数的图像重建任务.网络主要由3D卷积和2D卷积组成,通过主成分分析(principal component analysis,PCA)来减少冗余信息,通过不同任务的重要程度优化两者的损失函数权重.2个特征在分割任务中融合送入由3D通道注意力及空间池化金字塔(spatial pyramid pooling,SPP)组成的光谱-空间特征,提取模块获取谱间相关性及空间上下文信息,从而实现更好的分割
为增强遮挡场景下所提取行人特征的判别力,有效挖掘样本类别信息,提出了一种基于特征关联和多损失融合的行人再识别方法.首先利用姿态估计器生成的人体关键点作为辅助信息,引导模型关注行人图像未被遮挡区域,提取姿态引导的全局特征;其次引入全局对比池化模块,将平均池化和最大池化的特性进行融合,提取对背景噪声和遮挡抗干扰性更强的全局特征;然后引入One-vs-rest关系模块,挖掘局部分块特征的内在关系,提取能够反映图像整体信息的局部特征;最后将交叉熵损失、难样本采样三元组损失和中心损失这3种损失函数进行加权融合,监督