Literature DB >> 30566275

Doping of Carbon Materials for Metal-Free Electrocatalysis.

Chuangang Hu1, Liming Dai1.   

Abstract

Carbon atoms in the graphitic carbon skeleton can be replaced by heteroatoms with different electronegative from that of the carbon atom (i.e., heteroatom doping) to modulate the charge distribution over the carbon network. The charge modulation can be achieved via direct charge transfer with an electron acceptor/donor (i.e., charge transfer doping) or through introduction of defects (i.e., defective doping). Various doping strategies, including heteroatom doping, charge-transfer doping, and defective doping, have now been devised for modulating the charge distribution of numerous graphite carbon materials to impart new properties to carbon materials. Consequently, carbon nanomaterials with defined doping have recently become prominent members in the carbon family, promising for a variety of applications, including catalysis, energy conversion and storage, environmental remediation, and important chemical production and industrial processes. The purpose of this review is to present an overview on the doping of carbon materials for metal-free electrocatalysis, especially the development of doping strategies and doping-induced structure and property changes for potential catalytic applications. Current challenges and future perspectives in the doped carbon-based metal-free catalyst field are also discussed.
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  carbon nanomaterials; doping; electrocatalysis; metal-free catalysts

Year:  2018        PMID: 30566275     DOI: 10.1002/adma.201804672

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  8 in total

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Review 2.  Electrosynthesis of H2O2 through a two-electron oxygen reduction reaction by carbon based catalysts: From mechanism, catalyst design to electrode fabrication.

Authors:  Jingkun An; Yujie Feng; Qian Zhao; Xin Wang; Jia Liu; Nan Li
Journal:  Environ Sci Ecotechnol       Date:  2022-03-30

3.  Catalytic oxidative dehydrogenation of N-heterocycles with nitrogen/phosphorus co-doped porous carbon materials.

Authors:  Kangkang Sun; Hongbin Shan; Rui Ma; Peng Wang; Helfried Neumann; Guo-Ping Lu; Matthias Beller
Journal:  Chem Sci       Date:  2022-05-17       Impact factor: 9.969

4.  Nitrogen-Doped Carbons Derived from Imidazole-Based Cross-Linked Porous Organic Polymers.

Authors:  Wojciech Kiciński; Sławomir Dyjak
Journal:  Molecules       Date:  2021-01-27       Impact factor: 4.411

5.  Understanding of catalytic ROS generation from defect-rich graphene quantum-dots for therapeutic effects in tumor microenvironment.

Authors:  Zi Gu; Liming Dai; Xichu Wang; Chuangang Hu
Journal:  J Nanobiotechnology       Date:  2021-10-26       Impact factor: 10.435

6.  Heteroatom-Doped Hierarchically Porous Biochar for Supercapacitor Application and Phenol Pollutant Remediation.

Authors:  Diyong Tang; Li Lu; Zhipeng Luo; Baokun Yang; Jun Ke; Weidong Lei; Hongran Zhen; Yuan Zhuang; Jie Sun; Ke Chen; Jie Sun
Journal:  Nanomaterials (Basel)       Date:  2022-07-28       Impact factor: 5.719

7.  Fine-Tuning Pyridinic Nitrogen in Nitrogen-Doped Porous Carbon Nanostructures for Boosted Peroxidase-Like Activity and Sensitive Biosensing.

Authors:  Hongye Yan; Linzhe Wang; Yifeng Chen; Lei Jiao; Yu Wu; Weiqing Xu; Wenling Gu; Weiyu Song; Dan Du; Chengzhou Zhu
Journal:  Research (Wash D C)       Date:  2020-11-06

8.  Magnetically Aligned Ultrafine Cobalt Embedded 3D Porous Carbon Metamaterial by One-Step Ultrafast Laser Direct Writing.

Authors:  Jin Xu; Ruoxing Wang; Haoqing Jiang; Xingtao Liu; Licong An; Shengyu Jin; Biwei Deng; Wenzhuo Wu; Gary J Cheng
Journal:  Adv Sci (Weinh)       Date:  2021-11-01       Impact factor: 16.806

  8 in total

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