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Flexible hydrogen fuel cell fabricated on paper with embedded aluminium foil

机译:带有嵌入铝箔的纸制柔性氢燃料电池

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Direct hydrogen fuel cells are generally heavy and rigid systems based on metal or plastic materials, which are not suitable for various miniwatt and flexible devices. In this study, we have developed a lightweight and flexible fuel cell based on paper substrate embedded with an Al foil inside, which is used as an in-situ hydrogen source by reaction with an electrolyte solution during operation. Benefited from the inhibited hydroxyl transportation by the porous cellulose network, the vigorous Al corrosion reaction is well controlled even though strong alkaline electrolyte is adopted, so that the fuel cell can be discharged for more than 5 hours at 1 mA cm~(-2)(0.83 V) with only 3.5 mg Al foil. The corresponding faradaic and energy efficiencies are as high as 72% and 18.3%, respectively. The fuel cell flexibility is also quite good when facing different bending angles. Considering its moderate power output, this flexible paper-based hydrogen fuel cell is especially suitable for powering various miniwatt and flexible devices, such as wearable electronics, biosensors, RFID tags, etc. However, higher power can be obtained by suitable stacking of the fuel cell.
机译:直接氢燃料电池通常是基于金属或塑料材料的重型和刚性系统,不适用于各种微型瓦特和柔性设备。在这项研究中,我们开发了一种轻质且灵活的燃料电池,该燃料电池基于嵌入铝箔的纸质基材,可在运行过程中通过与电解质溶液反应而用作原位氢源。得益于多孔纤维素网络对羟基传输的抑制,即使采用强碱性电解质,也能很好地控制剧烈的Al腐蚀反应,因此燃料电池可以在1 mA cm〜(-2)下放电5小时以上。 (0.83 V)和仅3.5 mg铝箔。相应的法拉第效率和能量效率分别高达72%和18.3%。当面对不同的弯曲角度时,燃料电池的柔韧性也非常好。考虑到其适度的功率输出,这种柔性纸基氢燃料电池特别适合为各种微型瓦特和柔性设备(例如可穿戴电子设备,生物传感器,RFID标签等)供电。但是,通过适当堆放燃料可以获得更高的功率细胞。

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