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Three-Dimensional Graphene Networks as a New Substrate for Immobilization of Laccase and Dopamine and Its Application in Glucose/O2 Biofuel Cell

机译:三维石墨烯网络作为固定化漆酶和多巴胺的新基质及其在葡萄糖/ O2生物燃料电池中的应用

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We report here three-dimensional graphene networks (3D-GNs) as a novel substrate for the immobilization of laccase (Lac) and dopamine (DA) and its application in glucose/O2 biofuel cell. 3D-GNs were synthesized with an Ni -exchange/ICOH activation combination method using a 732-type sulfonic acid ion-exchange resin as the carbon precursor. The 3D-GNs exhibited an interconnected network structure and a high specific surface area. DA was noncovalently functionalized on the surface of 3D-GNs with 3,4,9,10-perylene tetracarboxylic acid (PTCA) as a bridge and used as a novel immobilized mediating system for Lac-based bioelectrocatalytic reduction of oxygen. The 3D-GNs-PTCA-DA nanocomposite modified glassy carbon electrode (GCE) showed stable and well-defined redox current peaks for the catechol/o-quinone redox couple. Due to the mediated electron transfer by the 3D-GNs-PTCA-DA nanocomposite, the Nafion/Lac/3D-GNs-PTCA-DA/GCE exhibited high catalytic activity for oxygen reduction. The 3D-GNs are proven to be a better substrate for Lac and its mediator immobilization than 2D graphene nanosheets (2D-GNs) due to the interconnected network structure and high specific surface area of 3D-GNs. A glucose/o2 fuel cell using Nafion/Lac/3D-GNs-PTCA-DA/GCE as the cathode and Nafion/glucose oxidase/ferrocence/3D-GNs/GCE as the anode can output a maximum power density of 112 μW cm~(-2) and a short-circuit current density of 0.96 mA cm~(-2). This work may be helpful for exploiting the popular 3D-GNs as an efficient electrode material for many other biotechnology applications.
机译:我们在这里报告三维石墨烯网络(3D-GNs)作为固定漆酶(Lac)和多巴胺(DA)的新型底物及其在葡萄糖/ O2生物燃料电池中的应用。使用732型磺酸离子交换树脂作为碳前体,通过Ni-exchange / ICOH活化结合法合成3D-GN。 3D-GNs表现出相互连接的网络结构和高比表面积。 DA通过3,4,9,10- non四甲酸(PTCA)作为桥在3D-GNs表面非共价官能化,并用作基于Lac的生物电催化还原氧气的新型固定化介导系统。 3D-GNs-PTCA-DA纳米复合修饰玻碳电极(GCE)在邻苯二酚/邻醌氧化还原对中显示出稳定且定义明确的氧化还原电流峰值。由于3D-GNs-PTCA-DA纳米复合材料介导的电子转移,Nafion / Lac / 3D-GNs-PTCA-DA / GCE表现出较高的催化活性以减少氧。由于2D石墨烯纳米片(2D-GNs)具有互连的网络结构和较高的比表面积,因此已证明3D-GNs是Lac及其固定介质的更好基质。以Nafion / Lac / 3D-GNs-PTCA-DA / GCE为阴极,Nafion /葡萄糖氧化酶/铁茂铁/ 3D-GNs / GCE为阳极的葡萄糖/ o2燃料电池可输出的最大功率密度为112μWcm〜 (-2)和0.96 mA cm〜(-2)的短路电流密度。这项工作可能有助于将流行的3D-GNs用作许多其他生物技术应用的有效电极材料。

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