Qiu Xing, Yu Qianhang, Cheng Yuanjie, Lo Jeffery C C, Lee Shi-Wei Ricky
HKUST Shenzhen-Hong Kong Collaborative Innovation Research Institute, Futian, Shenzhen 518000, China.
Smart Manufacturing Thrust, Hong Kong University of Science and Technology (Guangzhou), Nansha, Guangzhou 511400, China.
Polymers (Basel). 2025 Jan 20;17(2):250. doi: 10.3390/polym17020250.
The effectiveness of ultraviolet-C light-emitting diodes (UVC LEDs) is currently limited by the lack of suitable encapsulation materials, restricting their use in sterilization, communication, and in vivo cancer tumor inhibition. This study evaluates various silicone oils for UVC LED encapsulation. A material aging experiment was conducted on CF1040 (octamethylcyclotetrasiloxane), HF2020 (methyl hydro polysiloxanes), and MF2020-1000 (polydimethylsiloxane) under UVC radiation for 1000 h. The analysis assessed transmittance changes and chemical composition alterations throughout the aging process. Notably, HF2020 showed an increase in transmittance before 500 h, indicating a curing process attributed to the photolysis of Si-H, leading to the formation of Si-O-Si. Further testing on 265 nm UVC LEDs, both with and without HF2020 encapsulation, showed that the encapsulated LEDs exhibited a remarkable maximum increase of 27% in radiant power compared to their unencapsulated counterparts. Additionally, these encapsulated LEDs sustained higher radiant power levels during the first 200 h of operation. Notably, its potential application in photodynamic therapy is significant; by activating photosensitizers with higher UVC exposure, it facilitates the rapid production of reactive oxygen species, leading to effective cancer cell destruction within a short timeframe.
目前,紫外线C发光二极管(UVC LED)的有效性受到缺乏合适封装材料的限制,这限制了它们在灭菌、通信和体内癌症肿瘤抑制方面的应用。本研究评估了用于UVC LED封装的各种硅油。对CF1040(八甲基环四硅氧烷)、HF2020(甲基氢聚硅氧烷)和MF2020 - 1000(聚二甲基硅氧烷)在UVC辐射下进行了1000小时的材料老化实验。分析评估了整个老化过程中的透光率变化和化学成分改变。值得注意的是,HF2020在500小时之前透光率有所增加,这表明归因于Si - H光解的固化过程导致了Si - O - Si的形成。对265 nm的UVC LED进行的进一步测试,无论有无HF2020封装,结果表明,与未封装的LED相比,封装后的LED辐射功率显著最大增加了27%。此外,这些封装后的LED在运行的前200小时内保持了更高的辐射功率水平。值得注意的是,其在光动力疗法中的潜在应用意义重大;通过更高的UVC照射激活光敏剂,它有助于在短时间内快速产生活性氧,从而有效地破坏癌细胞。