[2] YU P,XIE J,CHEN Y,et al. A thermo-sensitive injectable hydroxypropyl chitin hydrogel for sustained salmon calcitonin release with enhanced osteogenesis and hypocalcemic effects [J]. Journal of Materials Chemistry B,2020,8(2):270-281.
[3] ZHENG C X, LU K Y, LU Y, et al. A stretchable,self-healing conductive hydrogels based on nanocellulose supported graphene towards wearable monitoring of human motion [J]. Carbohydrate Polymers,2020,250:116905:1-12.
[4] YU H,YANG X N,LIAN Y L,et al. An integrated flexible multifunctional wearable electronic device for personal health monitoring and thermal management [J]. Sensors and Actuators A:Physical,2021,318:112514:1-9.
[5] HAN Z Y,CHENG Z Q,CHEN Y, et al. Fabrication of highly pressure-sensitive,hydrophobic,and flexible 3D carbon nanofiber networks by electrospinning for human physiological signal monitoring [J]. Nanoscale,2019,11(13):5942-5950.
[6] LI T,LI Y,ZHANG T. Materials,structures,and functions for flexible and stretchable biomimetic sensors [J]. Accounts of Chemical Research,2019,52(2):288-296.
[7] ICHIMURA Y, KURITSUBO T, NAGAMINE K,et al. A fully screen-printed potentiometric chloride ion sensor employing a hydrogel-based touchpad for simple and non-invasive daily electrolyte analysis [J]. Analytical and Bioanalytical Chemistry,2021,413(7):1883-1891.
[8] LU C,CHEN X. Latest advances in flexible symmetric supercapacitors:from material engineering to wearable applications [J]. Accounts of Chemical Research,2020,53(8):1468-1477.
[9] ZHANG Q,LIU X,ZHANG J W,et al. A highly conductive hydrogel driven by phytic acid towards a wearable sensor with freezing and dehydration resistance [J]. Journal of Materials Chemistry A,2021,9(39):22615-22625.
[10] HUANG C C,BAI H,LI C,et al. A graphene oxide/hemoglobin composite hydrogel for enzymatic catalysis in organic solvents [J]. Chemical Communications,2011,47(17):4962-4964.
[11] SUN S T, WU P Y. A one-step strategy for thermal- and pH-responsive graphene oxide interpenetrating polymer hydrogel networks [J]. Journal of Materials Chemistry,2011,21(12):4095-4097.
[12] XIA Y M,WU Y P,YU T,et al. Multifunctional glycerol-water hydrogel for biomimetic human skin with resistance memory function [J]. ACS Applied Materials & Interfaces,2019,11(23):21117-21125.
[13] LEI Z Y,WANG Q K,SUN S T,et al. A bioinspired mineral hydrogel as a self-healable,mechanically adaptable ionic skin for highly sensitive pressure sensing [J]. Advanced Materials,2017,29(22):1700321:1-6.
[14] 李阳,邱唯楚,蔡卓,等. 聚吡咯/石墨烯复合水凝胶的制备与性能[J].武汉工程大学学报,2018,40(5):530-533.
[15] LI S N,YU Z R,GUO B F,et al. Environmentally stable,mechanically flexible,self-adhesive,and electrically conductive Ti3C2TX MXene hydrogels for wide-temperature strain sensing [J]. Nano Energy,2021,90(Part A):106502:1-12.
[16] WU Z X,SHI W X,DING H J,et al. Ultrastable,stretchable,highly conductive and transparent hydrogels enabled by salt-percolation for high-performance temperature and strain sensing [J]. Journal of Materials Chemistry C,2021,9(39):13668-13679.
[17] 厉世能. 强韧化聚丙烯酰胺/壳聚糖水凝胶的结构与性能关系研究[D]. 哈尔滨:哈尔滨工业大学,2020.
[18] 王映桂,张思洁,刘璨,等.可降解自愈合壳聚糖/瓜尔胶水凝胶的制备与性能[J].武汉工程大学学报,2020,42(3):302-306.
[19] MA C, PANG H W, LIU H G, et al. A tough,adhesive,self-healable,and antibacterial plant-inspired hydrogel based on pyrogallol-borax dynamic cross-linking [J]. Journal of Materials Chemistry B,2021,9(20):4230-4240.
[20] THOMBARE N, JHA U, MISHRA S, et al. Guar gum as a promising starting material for diverse applications:a review [J]. International Journal of Biological Macromolecules,2016,88:361-372.
[21] QIAO Z,PARKS J,CHOI P,et al. Applications of highly stretchable and tough hydrogels [J]. Polymers,2019,11(11):1773:1-15.
[22] 刘瑞雪,李义梦,李迎博,等.银离子对结冷胶/聚丙烯酰胺双网络水凝胶的增强作用[J].功能高分子学报,2019,32(3):353-359.