Shi Fan, Zhang Zejun, Ara Behisht, Huang Zhitan, Gui Qifeng, Mansoor Ahmad, Sun Wei
Hainan International Joint Research Center of Marine Advanced Photoelectric Functional Materials, Key Laboratory of Laser Technology and Optoelectronic Functional Materials of Hainan Province, College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou 571158, China.
College of Resources and Environment, Baoshan University, Baoshan 678000, China.
ACS Sens. 2024 Dec 27;9(12):6482-6491. doi: 10.1021/acssensors.4c01844. Epub 2024 Dec 11.
Fe single-atom and Fe cluster-coupled N, S co-doped carbon nanomaterials (Fe-FeO-NSC) were prepared through a two-step high-temperature pyrolysis process using Gelidium corneum enriched with C, Fe, O, N, and S as precursors. The analysis by aberration-corrected scanning transmission electron microscopy and X-ray absorption spectroscopy revealed the presence of single-atom Fe in Fe-N coordination structures, along with small clusters as Fe-O-coordinated FeO. Single-atom Fe in the form of Fe/Fe provides more electrocatalytic active sites, which synergistically accelerates the charge migration process in the assembly of Fe-FeO-NSC with FeO clusters. The flexible nonenzymatic sensor, based on Fe-FeO-NSC and fabricated using a polydimethylsiloxane substrate, exhibited excellent catalytic activity for both uric acid (UA) and tyrosine (Tyr). Low detection limits for UA (0.14 μmol L) and Tyr (0.03 μmol L) were observed by using chronoamperometry in artificial sweat. The in situ detection of sweat was performed in combination with an integrated circuit board affixed to human skin, and the results were generally consistent with those of the high-performance liquid chromatography method. Therefore, Fe-FeO-NSC serves as a good modifier for wearable electrochemical sweat sensor applications.
以富含C、Fe、O、N和S的石花菜为前驱体,通过两步高温热解过程制备了Fe单原子和Fe簇耦合的N、S共掺杂碳纳米材料(Fe-FeO-NSC)。通过像差校正扫描透射电子显微镜和X射线吸收光谱分析表明,在Fe-N配位结构中存在单原子Fe,同时还存在作为Fe-O配位的FeO的小簇。Fe/Fe形式的单原子Fe提供了更多的电催化活性位点,协同加速了Fe-FeO-NSC与FeO簇组装中的电荷迁移过程。基于Fe-FeO-NSC并使用聚二甲基硅氧烷基板制造的柔性非酶传感器,对尿酸(UA)和酪氨酸(Tyr)均表现出优异的催化活性。通过计时电流法在人工汗液中观察到UA(0.14 μmol L)和Tyr(0.03 μmol L)的低检测限。结合贴附在人体皮肤上的集成电路板对汗液进行原位检测,结果与高效液相色谱法的结果基本一致。因此,Fe-FeO-NSC可作为可穿戴电化学汗液传感器应用的良好修饰剂。