Bao Zixian, Liu Jiezheng, Bi Yujia, Zhao Guang
State Key Laboratory of Microbial Technology, Institute of Microbial Technology, Shandong University, Qingdao 266237, China.
CAS Key Laboratory of Biobased Materials, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.
Polymers (Basel). 2025 Mar 28;17(7):914. doi: 10.3390/polym17070914.
pH is a critical parameter that influences biochemical and environmental processes. Real-time and accurate pH detection is essential for monitoring health and the environment. Herein, a bacterial cellulose and methylacrylated chitosan (BC-MACS) composite hydrogel was prepared to achieve rapid pH detection. The integration of MACS reduced the crystallinity of pristine BC, with no adverse effects on thermal stability. SEM images validated the fibrous nature of the BC-MACS composite, indicating that MACS was successfully infiltrated into the pores of BC. By incorporating MACS into the BC matrix, the exceptional biocompatibility of BC was maintained, while simultaneously augmenting its mechanical properties. Due to the excellent swelling ability of MACS, the fabricated BC-MACS hydrogel exhibited superior swelling behavior compared to the BC hydrogel, which facilitated the absorption of the solution under test. A BC-MACS pH sensor was fabricated by introducing the pH indicator solution, and the color variation across the pH range (2-12) demonstrated a clear response to pH changes. Therefore, the BC-MACS pH sensor holds potential for use as a visual indicator in a diverse range of applications, especially for health and environmental monitoring.
pH是影响生物化学和环境过程的关键参数。实时、准确的pH检测对于监测健康状况和环境至关重要。在此,制备了一种细菌纤维素和甲基丙烯酸化壳聚糖(BC-MACS)复合水凝胶,以实现快速pH检测。MACS的加入降低了原始BC的结晶度,且对热稳定性无不利影响。扫描电子显微镜图像证实了BC-MACS复合材料的纤维性质,表明MACS成功渗入了BC的孔隙中。通过将MACS掺入BC基质中,BC优异的生物相容性得以保持,同时其机械性能得到增强。由于MACS具有出色的溶胀能力,所制备的BC-MACS水凝胶与BC水凝胶相比表现出卓越的溶胀行为,这有利于吸收被测溶液。通过引入pH指示溶液制备了一种BC-MACS pH传感器,在pH范围(2-12)内的颜色变化表明其对pH变化有明显响应。因此,BC-MACS pH传感器有潜力在各种应用中用作视觉指示剂,特别是用于健康和环境监测。