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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A novel self-assembly approach for synthesizing nanofiber aerogel supported platinum single atoms
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A novel self-assembly approach for synthesizing nanofiber aerogel supported platinum single atoms

机译:一种合成纳米纤维气凝胶支撑铂单原子的新型自组装方法

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摘要

A great challenge in catalyst engineering is precisely assembling and positioning nanoscale active metals at desired locations while constructing robust functional architectures. This article presents a novel approach for constructing macroscopic Ag-doped manganese oxide aerogels (up to 2 L) while homogeneously incorporating active Pt single atoms (Pt/Ag-MnO2) based on a solution-solid-solid (SSS) mechanism. AgO(x)seeds were identified as key species for triggering the octopus-like growth of MnO(2)nanofibers and inserting Ag and Pt into the MnO(2)crystalline framework. The interconnection and entanglement among nanofibers allowed the formation of mechanically strengthened hierarchical structures, leading to one of the most robust manganese-based aerogels to date. Impressively, the Pt/Ag-MnO(2)aerogel also possessed promising selectivity and stability toward the electrocatalytic oxygen reduction reaction, with Pt showing a high mass activity of 1.6 A/(mg(Pt)) at 0.9 Vvs.RHE. Experimental characterization and theoretical calculation confirmed Pt single atoms to be located at substitutional lattice sites, which reduced the overall oxygen reduction barriers. Our approach suggests that SSS or other analogous nanofiber or nanowire growth strategies are powerful in controlling structural formation over the entire range of length scales while being applicable to fabricating single-atom catalysts.
机译:在催化剂工程的一大挑战是准确地装配,并在所希望的位置定位的纳米级活性金属而构成健壮的功能架构。本文介绍用于构建宏观掺杂Ag的锰氧化物气凝胶(最多2 L)而均匀地掺入基于溶液 - 固体 - 固体(SSS)机制活性的Pt单原子(铂/银 - 二氧化锰)的新方法。前(x)的种子被确定为关键物种用于触发章鱼状的MnO(2)纳米纤维和插入Ag和Pt入的MnO(2)结晶骨架的生长。纳米纤维之间的互连和纠缠允许机械上得到加强的分层结构的形成,从而导致最强大的锰基气凝胶最新的一个。令人印象深刻时,Pt / Ag系的MnO(2)气凝胶还具有朝向电氧还原反应有前途的选择性和稳定性,有Pt示出了在0.9 Vvs.RHE 1.6 A /(毫克(Pt)的)的高质量活性。实验表征和理论计算确定的Pt单个原子以位于置换晶格位置,从而减少了总的氧还原的障碍。我们的方法表明SSS或其它类似的纳米纤维或纳米线生长的策略是在超过长度尺度的整个范围内控制结构形成,而可应用于制造单原子催化剂强大。

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    Donghua Univ State Key Lab Modificat Chem Fibers Polymer Mat 299-9 North Renmin Rd Shanghai 201620 Peoples R China;

    Chinese Acad Sci Shanghai Adv Res Inst SARI CAS Key Lab Low Carbon Convers Sci &

    Engn 100 Haike Rd Shanghai 201210 Peoples R China;

    Hokkaido Univ Inst Adv Higher Educ Kita Ku North 10 West 8 Sapporo Hokkaido 0600817 Japan;

    Chinese Acad Sci Shanghai Adv Res Inst SARI CAS Key Lab Low Carbon Convers Sci &

    Engn 100 Haike Rd Shanghai 201210 Peoples R China;

    Chinese Acad Sci Shanghai Adv Res Inst SARI Zhangjiang Lab Shanghai Synchrotron Radiat Facil 239 Zhangheng Rd Shanghai 201203 Peoples R China;

    Chinese Acad Sci Shanghai Adv Res Inst SARI Zhangjiang Lab Shanghai Synchrotron Radiat Facil 239 Zhangheng Rd Shanghai 201203 Peoples R China;

    Donghua Univ State Key Lab Modificat Chem Fibers Polymer Mat 299-9 North Renmin Rd Shanghai 201620 Peoples R China;

    RIKEN SPring 8 Ctr 1-1-1 Kouto Sayo Hyogo 6795148 Japan;

    Donghua Univ State Key Lab Modificat Chem Fibers Polymer Mat 299-9 North Renmin Rd Shanghai 201620 Peoples R China;

    Kyushu Univ Int Inst Carbon Neutral Energy Res WPI I2 CNER Nishi Ku Motooka 744 Fukuoka 8190395 Japan;

    Chinese Acad Sci Shanghai Adv Res Inst SARI Zhangjiang Lab Shanghai Synchrotron Radiat Facil 239 Zhangheng Rd Shanghai 201203 Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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