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Enzyme precipitate coatings of glucose oxidase onto carbon paper for biofuel cell applications

机译:酶将葡萄糖氧化酶的涂层沉淀到碳纸上,用于生物燃料电池应用

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Enzymatic biofuel cells (BFC) have a great potential as a small power source, but their practical applications are being hampered by short lifetime and low power density. This study describes the direct immobilization of glucose oxidase (GOx) onto the carbon paper in the form of highly stable and active enzyme precipitation coatings (EPCs), which can improve the lifetime and power density of BFCs. EPCs were fabricated directly onto the carbon paper via a three-step process: covalent attachment (CA), enzyme precipitation, and chemical crosslinking. GOx-immobilized carbon papers via the CA and EPC approaches were used as an enzyme anode and their electrochemical activities were tested under the BFC-operating mode. The BFCs with CA and EPC enzyme anodes produced the maximum power densities of 50 and 250μW/cm ~2, respectively. The BFC with the EPC enzyme anode showed a stable current density output of >700μA/cm ~2 at 0.18V under continuous operation for over 45h. When a maple syrup was used as a fuel under ambient conditions, it also produced a stable current density of >10μA/cm ~2 at 0.18V for over 25h. It is anticipated that the direct immobilization of EPC on hierarchical-structured electrodes with a large surface area would further improve the power density of BFCs that can make their applications more feasible.
机译:酶促生物燃料电池(BFC)作为一种小型电源具有巨大的潜力,但由于使用寿命短和功率密度低,其实际应用受到了阻碍。这项研究描述了以高度稳定和活性的酶沉淀涂层(EPC)的形式将葡萄糖氧化酶(GOx)直接固定在碳纸上,可以提高BFC的寿命和功率密度。 EPC通过三个步骤直接在复写纸上制造:共价连接(CA),酶沉淀和化学交联。通过CA和EPC方法固定GOx的碳纸被用作酶阳极,并在BFC操作模式下测试了它们的电化学活性。具有CA和EPC酶阳极的BFC分别产生50和250μW/ cm〜2的最大功率密度。具有EPC酶阳极的BFC在连续运行超过45h的情况下,在0.18V时显示稳定的电流密度输出>700μA/ cm〜2。当在环境条件下将枫糖浆用作燃料时,它在0.18V的电压下持续25h的稳定电流密度也>10μA/ cm〜2。预期将EPC直接固定在具有大表面积的分层结构电极上将进一步提高BFC的功率密度,从而使其应用更加可行。

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