Fanli MengHanxiong ZhengYufeng SunMinqiang LiJinhuai Liu
It is of great significance for dynamic monitoring of foods in storage or during the transportation process through on-line detecting trimethylamine (TMA). Here, TMA were sensitively detected by Au-modified hierarchical porous single-crystalline ZnO nanosheets (HPSCZNs)-based sensors. The HPSCZNs were synthesized through a one-pot wet-chemical method followed by an annealing treatment. Polyethyleneimine (PEI) was used to modify the surface of the HPSCZNs, and then the PEI-modified samples were mixed with Au nanoparticles (NPs) sol solution. Electrostatic interactions drive Au nanoparticles loading onto the surface of the HPSCZNs. The Au-modified HPSCZNs were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and energy dispersive spectrum (EDS), respectively. The results show that Au-modified HPSCZNs-based sensors exhibit a high response to TMA. The linear range is from 10 to 300 ppb; while the detection limit is 10 ppb, which is the lowest value to our knowledge.
Bo ZhangYan WangXiaoning MengZhanying ZhangShifang Mu
Cuiping GuHuanhuan HuangJiarui HuangZhen JinHanxiong ZhengNing LiuMinqiang LiJinhuai LiuFanli Meng
Jun ZhouFeilong GongHuanxin WangYuanhua XiaoFeng LiWenning Mai
Keng XuJingping ZouShouqin TianYong YangFanyan ZengTing YuYuting ZhangXiaomeng JieCailei Yuan
Feifei WangChong WangZhenkai ZhangErdong LiangYue ChenZhenyue LiuXiaoming TanXingtai ChenDavoud DastanXi-Tao Yin