Wang Xi, Meng Xiao, Cui Tongtong, Hu Qian, Jin Bowen, He Yisheng, Zhu Xingjun, Ye Chunhong
School of Physical Science and Technology, Shanghai Tech University, 393 Huaxia Middle Rd., Pudong Dist., Shanghai 201210, China.
School of Physical Science and Technology, Shanghai Tech University, 393 Huaxia Middle Rd., Pudong Dist., Shanghai 201210, China.
Carbohydr Polym. 2024 Oct 1;341:122309. doi: 10.1016/j.carbpol.2024.122309. Epub 2024 May 22.
Room temperature phosphorescence (RTP) materials with wood as framework are highly desirable due to their extended afterglow, high haze and good mechanical properties, which is highly desired in lighting materials. However, it remains challenging to obtain wood-based RTP materials that possess on-demand afterglow colors while maintaining high transparency across the entire visible spectrum. In this study, long-persistent phosphorescent transparent composite with tunable afterglow color is fabricated by infiltrating delignified wood with phosphors (including carbazole, naphthalene, and pyrene) doped polymethyl methacrylate (PMMA). Such RTP woods indicate remarkable transparency, over 70 %, and an extended afterglow duration of up to 8 s. Here, PMMA serves as rigid surrounding to suppress the non-radiative transition of phosphors to ensure phosphorescence, and to fulfill in the wood lumen to match the refractive index of cellulose for transparency. By formulating phosphors with different types and concentration ratios, transparent woods with diverse phosphorescence colors, and white emission, are successfully achieved. Furthermore, the RTP woods demonstrate dynamically tunable afterglow colors over time based on the varied phosphorescent lifetimes. Characterized by their high transparency and tunable colors, these natural wood-based RTP materials have great potentials for application in the fields of LED materials, optics, and building materials.
以木材为骨架的室温磷光(RTP)材料因其余辉延长、雾度高和机械性能良好而备受青睐,这在照明材料中是非常理想的。然而,要获得在整个可见光谱范围内保持高透明度的同时具有按需余辉颜色的木质RTP材料仍然具有挑战性。在本研究中,通过用掺杂有磷光体(包括咔唑、萘和芘)的聚甲基丙烯酸甲酯(PMMA)渗透脱木质素木材,制备了具有可调余辉颜色的长余辉磷光透明复合材料。这种RTP木材具有超过70%的显著透明度和长达8秒的延长余辉持续时间。在这里,PMMA作为刚性基体来抑制磷光体的非辐射跃迁以确保磷光,并填充在木材管腔中以匹配纤维素的折射率以实现透明。通过配制不同类型和浓度比的磷光体,成功实现了具有不同磷光颜色和白色发射的透明木材。此外,基于不同的磷光寿命,RTP木材的余辉颜色随时间动态可调。这些天然木质RTP材料以其高透明度和可调颜色为特征,在LED材料、光学和建筑材料领域具有巨大的应用潜力。