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FeNxC Based Catalysts Prepared by the Calcination of Iron-Ethylenediamine@Polyaniline as the Cathode-Catalyst of Proton Exchange Membrane Fuel Cell

机译:铁-乙二胺@聚苯胺煅烧制备的FeNxC基催化剂作为质子交换膜燃料电池的阴极催化剂

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摘要

Calcinated tris(ethylenediamine)iron(III) chloride was used as a non-precious metal catalyst (NPMCs) for a proton exchanged membrane fuel cell (PEMFC) under the protection of polyaniline (PANI), which behaves as both nitrogen source and carbon supporter. The optimal ratio of FeCl3/EDA was found to be close to 1/3 under the consideration of the electrocatalytic performance, such as better oxygen reduction reaction (ORR) and higher power density. Two-stage calcination, one at 900 °C in N2 and the other at 800 °C in mixed gases of N2 and NH3, result in an FeNxC catalyst (FeNC-900-800-A) with pretty high specific surface area of 1098 m2·g−1 covered with both micro- and mesopores. The ORR active sites focused mainly on Fe–Nx bonding made of various pyridinic, pyrrolic, and graphitic N-s after calcination. The max. power density reaches 140 mW·cm−2 for FeNC-900-800-A, which is superior to other FeNxC catalysts, experiencing only one-stage calcination in N2. The FeNxC demonstrates only 10 mV half-wave-voltage (HWV) loss at 1600 rpm after 1000 redox cycles, as compared to be 27 mV for commercial Pt/C catalyst in the durability test.
机译:在聚苯胺(PANI)的保护下,煅烧的三(乙二胺)氯化铁(III)被用作质子交换膜燃料电池(PEMFC)的非贵金属催化剂(NPMC),它既充当氮源又充当碳载体。考虑到电催化性能,例如更好的氧还原反应(ORR)和更高的功率密度,发现FeCl3 / EDA的最佳比例接近1/3。两步煅烧,一个是在N2中于900°C,另一个是在N2与NH3的混合气体中于800°C,导致FeNxC催化剂(FeNC-900-800-A)具有相当高的比表面积1098 m 2 ·g −1 被微孔和中孔覆盖。 ORR活性位主要集中在煅烧后由各种吡啶,吡咯和石墨N-s构成的Fe-Nx键上。最高FeNC-900-800-A的功率密度达到140 mW·cm -2 ,优于其他FeNxC催化剂,仅在N2中经历了一次煅烧。 FeNxC在1000次氧化还原循环后在1600 rpm时仅表现出10 mV的半波电压(HWV)损失,而在耐久性测试中,商用Pt / C催化剂的损失为27 mV。

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