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Construction of efficient bioelectrochemical devices: Improved electricity production from cyanobacteria (Leptolyngbia sp.) based on pi-conjugated conducting polymer/gold nanoparticle composite interfaces

机译:高效生物电化学装置的构建:基于PI缀合的传导聚合物/金纳米粒子复合界面改善了Cyanobacteria(Leptolyngbia SP)的电力生产

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摘要

In this study, gold electrodes (GE) were coated with conducting polymers to obtain a high photocurrent using cyanobacteria from a novel bioelectrochemical fuel cell. For this purpose, 4-(4H-ditiheno[3,2-b:2',3'-d]pyrol-4-yl) aniline and 5-(4H-dithieno[3,2-b:2',3'-d]pyrol-4-yl) napthtalane-1-amine monomers were coated on GE by performing an electropolymerization process. After that, gold nanoparticles (AuNP) were specifically modified by 2-mercaptoethane sulfonic acid and p-aminothiophenol to attach to the electrode surface. The conducting polymers GE coat was modified with functionalized AuNP using a cross-linker. The resulting electrode structures were characterized by cyclic voltammetry and chronoamperometry under on-off illumination using a fiber optic light source. Cyanobacteria Leptolyngbia sp. was added to the GE/conducting polymer/AuNP electrode surface and stabilized by using a cellulose membrane. During the illumination, water was oxidized by the photosynthesis, and oxygen was released. The released oxygen was electrocatalytically reduced at the cathode surface and a 25 nA/cm(2) photocurrent was observed in GE/Leptolyngbia sp. After the electrode modifications, a significant improvement in the photocurrent up to 630 nA/cm(2) was achieved.
机译:在该研究中,用传导聚合物涂覆金电极(GE),以使用来自新的生物电化学燃料电池的蓝藻获得高光电流。为此目的,4-(4H-DITIHENO [3,2-B:2',3'-D] Pyrol-4-Y1)苯胺和5-(4H-DITHIENO [3,2-B:2',3通过进行电聚合过程,在Ge上涂覆在Ge上的“-d”吡咯-4-基。之后,金纳米颗粒(AUNP)由2-巯基乙烷磺酸和对氨基酚酚特异性修饰,以连接到电极表面。使用交联剂用官能化AUNP改性导电聚合物GE涂层。通过使用光纤光源在开关照明下的循环伏安法和计时率的特征在于所得电极结构。 Cyanobacteria leptolyngbia sp。被添加到Ge /导电聚合物/ aUnp电极表面上并通过使用纤维素膜稳定。在照明期间,水被光合作用氧化,释放氧气。释放的氧气在阴极表面处电催化减小,在Ge / Leptolyngbia Sp中观察到25na / cm(2)光电流。在电极修饰之后,达到光电流的显着改善,最高可达630纳/ cm(2)。

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