气凝胶
纳米片
材料科学
复合数
纳米纤维
芳纶
复合材料
多孔性
化学工程
纳米技术
纤维
工程类
作者
Zhaoqing Lu,Yajie Kou,Hua Li,Xiaoxu Xu,Lizhi Song,Shang‐Jie Yu,Shan Wang,Xingxiang Ji,Dinggen Hu,Weijing Chen
标识
DOI:10.1021/acsanm.5c01678
摘要
The industrialization process accelerates more and more kinds of volatile gas, with serious threats to the environment or human health having received great attention. Therefore, rapid real-time monitoring of harmful gases is urgently needed. This study investigated the gas-sensitive properties of an aramid nanofiber/MXene nanosheet (ANF/MXene) composite aerogel for detecting ammonia (NH3) at room temperature. Initially, two-dimensional (2D) MXene nanosheets were synthesized by removing Al atoms from Ti3AlC2 (MAX phase), which were then combined with ANF to produce a porous composite aerogel through freeze-drying. At room temperature, the response value of the ANF/MXene aerogel to 50 ppm of NH3 was approximately 4.96%, with a rapid recovery time (28 s), and remained stable even after 10 cycles. Additionally, the aerogel exhibited excellent long-term stability, lasting up to 45 days. Moreover, the ANF/MXene composite aerogel showed outstanding flexibility and flame retardancy, and it could bend and recover at low temperatures (−196 °C). As a result, the good gas-sensitive properties and stable mechanical properties enable the ANF/MXene aerogel to be suitable for flexible wearable sensor devices toward different environmental conditions in the future.
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