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Effective Synergistic Effect of Dipeptide-Polyoxometalate-Graphene Oxide Ternary Hybrid Materials on Peroxidase-like Mimics with Enhanced Performance

机译:二肽-多金属氧酸盐-氧化石墨烯三元杂化材料对过氧化物酶样模拟物的有效协同效应

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Dipeptide-polyoxometalates (POMs)-graphene oxide (GO) ternary hybrid is an excellent peroxidase-like mimic, exhibiting enhanced peroxidase-like activity compared to POMs alone. The hybrid was readily prepared through a reprecipitation method involving electrostatic encapsulation of H3PW12O40 (PW12) by cationic diphenylalanine (FF) peptide and coassembly of FF@PW12 spheres with graphene oxide (GO). Using 3,31,5,5'-tetramethylbenzidine (TMB) as the chromogenic substrate, the peroxidase-like activity of FF@PW12 was evaluated in the heterogeneous phase, and it is 13 times higher than that of pristine PW12 in the homogeneous phase. Furthermore, ternary hybrids of FF@PW12@GO containing 5 wt % GO could enhance the activity 1.7 times higher than that of FF@PW12. The noncovalent interactions of hydrogen bonding and ionic interaction between GO and POMs are speculated to result in the synergistic effect for the enhancement of peroxidase-like performance. The strong interactions between rGO and PW12 are evaluated by a four-probe Hall measurement via the van der Pauw method, and rGO is significantly p-doped by the doping effect of PW12 with lower LUMO energy than that of the energy level of rGO and also due to the electron reservoir feature of PW12. Cyclic voltammogram measurements also suggest that GO causes significant influence on the electronic structure of the reduced forms of the redox couples of PW12. The nature of the TMB catalytic reaction may originate from the generation of the hydroxyl radical ((OH)-O-center dot) from the decomposition of H2O2 by ternary hybrids and the formation of peroxo species of POM. Taking advantage of the UV-vis signals of TMB being correlated to the concentration of H2O2, FF@PW12@GO can be used to detect H2O2 within the limit of detection of 0.11 mu M, and the detection range is 1-75 mu M. The present method indeed opens up a promising route in constructing heterogeneous peroxidase-like mimics through the use of POMs via the introduction of GO for building H2O2 sensors.
机译:二肽-多金属氧酸盐(POM)-氧化石墨烯(GO)三元杂种是一种出色的过氧化物酶样模拟物,与单独的POM相比,其显示出增强的过氧化物酶样活性。该杂种很容易通过再沉淀方法制备,该方法包括通过阳离子二苯丙氨酸(FF)肽静电包封H3PW12O40(PW12),以及将FF @ PW12球与氧化石墨烯(GO)共组装。使用3,31,5,5'-四甲基联苯胺(TMB)作为生色底物,在异相中评估FF @ PW12的过氧化物酶样活性,在均相中它比原始PW12高13倍。 。此外,含有5wt%GO的FF @ PW12 @ GO的三元杂种可以将活性提高到FF @ PW12 @ GO的1.7倍。推测氢键的非共价相互作用和GO与POM之间的离子相互作用导致协同效应,以增强过氧化物酶样性能。 rGO和PW12之间的强相互作用是通过van der Pauw方法通过四探针霍尔测量来评估的,rGO被PW12的掺杂效应显着p掺杂,其LUMO能量低于rGO的能级,而且由于PW12具有电子存储功能。循环伏安图测量还表明,GO会对PW12氧化还原对的还原形式的电子结构产生重大影响。 TMB催化反应的性质可能源于三元杂化物分解H2O2和形成POM的过氧物种而产生的羟基自由基((OH)-O-中心点)。利用TMB的UV-vis信号与H2O2的浓度相关,可以使用FF @ PW12 @ GO在0.11μM的检测限内检测H2O2,检测范围为1-75μM。通过引入用于构建H 2 O 2传感器的GO,通过使用POM,本方法确实为构建异质过氧化物酶样模拟物开辟了一条有希望的途径。

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