> Pt catalysts in proton exchange membrane fuel cells (PEMFCs) typically use carbon blacks s'/> Hydrothermal Carbonization‐Derived Carbon from Waste Biomass as Renewable Pt Support for Fuel Cell Applications: Role of Carbon Activation
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Hydrothermal Carbonization‐Derived Carbon from Waste Biomass as Renewable Pt Support for Fuel Cell Applications: Role of Carbon Activation

机译:来自废生物质的水热碳化衍生的碳作为燃料电池应用的可再生PT支持:碳活化的作用

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> Pt catalysts in proton exchange membrane fuel cells (PEMFCs) typically use carbon blacks such as Vulcan (Vulcan is a registered trademark of the company Cabot Corporation) based on fossil sources. Thus, an important research task is using sustainable supports in PEMFCs. Hydrothermal carbonization (HTC) converts biomasses into chars, which are possible substitutes for fossil‐based carbons. Herein, a Pt catalyst derived from HTC of coconut shells is developed for catalysis of O 2 reduction in acidic media. Thermal activation enlarges the specific surface area by factor of 7 to 546?m 2 ?g ?1 and generates electrical conductivity making the material suitable for catalysis. Pt particles of 1.8?±?0.5?nm are distributed well on the activated carbon. Cyclic and CO stripping voltammetry show an electrochemical surface area (ECSA) of 69?±?21?m 2 ?g Pt ?1 , almost identical to that of the commercial catalyst using Vulcan (69?±?6?m 2 ?g Pt ?1 ). Although ECSAs are highly comparable, the activity for O 2 reduction is lower compared with the commercial catalyst. HTC‐derived carbon has a lower degree of graphitization, less functional oxygen groups on its surface, and a lower electrical conductivity than Vulcan. This suggests different Pt–support interactions.
机译: <第XML:ID =“ENTE201900344-SEC-0001”> > 质子交换膜燃料电池(PEMFC)中的Pt催化剂通常使用Vulcan(Vulcan是公司Cabot Corporation的注册商标)的炭黑,基于化石来源。因此,重要的研究任务是在PEMFC中使用可持续支持。水热碳化(HTC)将生物质转化为CHAR,这是可以替代化石的碳。在此,开发出源自椰子壳HTC的PT催化剂用于催化O. 2 减少酸性介质。热激活将比表面积放大为7至546° 2 ?G ?1 并产生导电性,使得适用于催化的材料。 Pt颗粒为1.8?±0.5?nm在活性炭上分布良好。循环和CO溶出伏安,显示电化学表面积(ECSA)为69?±21?m 2 ?G pt ?1 ,使用vulcan几乎与商业催化剂的相同(69?±6?6?m 2 ?G pt ?1 )。虽然ECSA是非常可比的,但o的活动 2 与商业催化剂相比,减少较低。 HTC衍生的碳具有较低的石墨化程度,其表面上的功能性较少,电导率低于硫磺。这表明不同的PT支持相互作用。

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