Key Laboratory of Bio-based Material Science & Technology (Northeast Forestry University), Ministry of Education, Harbin 150040, P. R. China.
Engineering Research Center of Advanced Wooden Materials, Ministry of Education, Harbin 150040, P. R. China.
ACS Appl Mater Interfaces. 2020 Aug 12;12(32):36628-36638. doi: 10.1021/acsami.0c10240. Epub 2020 Jul 28.
Formaldehyde (FA) is a widespread indoor air pollutant, and its efficient detection is a major industrial challenge. The development of a building material with real-time and visual self-detection of FA gas is highly desirable for meeting both construction and human health demands. Herein, a luminescent transparent wood (LTW) as the building material was developed for dual-channel, real-time, and visual detection of FA gas. It was fabricated by encapsulating multicolor lignin-derived carbon dots (CDs) and poly(vinyl alcohol) (PVA) into a delignified wood framework. It exhibited 85% optical transmittance, tunable room-temperature phosphorescence (RTP), and ratiometric fluorescence (FL) emission. The tunable luminescence was attributed to different CD graphitization and surface functionalization. The color-responsive ratiometric FL and delayed RTP detections of FA were displayed over the range of 20-1500 μM ( = 0.966, LOD = 1.08 nM) and 20-2000 μM ( = 0.977, LOD = 45.8 nM), respectively. The LTW was also used as an encapsulation film on a UV-emitting InGaN chip to form white light-emitting diodes, indicating the feasibility as an FA-responsive planar light source. The operational notion of functional LTW can expand its applications to new fields such as a stimuli-responsive light-transmitting window or planar light sources while monitoring indoor air pollutants, temperature, and humidity.
甲醛(FA)是一种广泛存在的室内空气污染物,其高效检测是一个主要的工业挑战。开发一种具有实时和可视化 FA 气体自检测功能的建筑材料,对于满足建筑和人类健康的需求至关重要。在此,我们开发了一种作为建筑材料的发光透明木材(LTW),用于 FA 气体的双通道、实时和可视化检测。它是通过将多色木质素衍生的碳点(CDs)和聚乙烯醇(PVA)封装到脱木质素木材框架中而制成的。它表现出 85%的光透过率、可调室温磷光(RTP)和比率荧光(FL)发射。可调谐发光归因于不同的 CD 石墨化和表面功能化。显示了对 FA 的颜色响应的比率 FL 和延迟 RTP 检测,检测范围分别为 20-1500 μM( = 0.966,LOD = 1.08 nM)和 20-2000 μM( = 0.977,LOD = 45.8 nM)。LTW 还被用作 UV 发光 InGaN 芯片上的封装膜,形成白光发光二极管,表明其作为 FA 响应型平面光源的可行性。功能 LTW 的操作概念可以将其应用扩展到新的领域,例如响应性透光窗或平面光源,同时监测室内空气污染物、温度和湿度。