date: 2020-11-06T07:43:15Z pdf:PDFVersion: 1.3 pdf:docinfo:title: ae0c01740 1..9 xmp:CreatorTool: Arbortext Advanced Print Publisher 11.2.5208/W Library-x64 access_permission:can_print_degraded: true pdf:docinfo:custom:fpage: 10061 subject: ACS Appl. Energy Mater. 2020.3:10061-10069 dc:format: application/pdf; version=1.3 pdf:docinfo:creator_tool: Arbortext Advanced Print Publisher 11.2.5208/W Library-x64 access_permission:fill_in_form: true pdf:encrypted: false dc:title: ae0c01740 1..9 modified: 2020-11-06T07:43:15Z cp:subject: ACS Appl. Energy Mater. 2020.3:10061-10069 pdf:docinfo:custom:ACS OpenAccess Version: v1.11 pdf:docinfo:subject: ACS Appl. Energy Mater. 2020.3:10061-10069 pdf:docinfo:custom:jav:journal_article_version: VoR pdf:docinfo:creator: Sudhir K. Sahoo, Julian Heske, Markus Antonietti, Qing Qin, Martin Oschatz, and Thomas D. Kühne meta:author: Sudhir K. Sahoo, Julian Heske, Markus Antonietti, Qing Qin, Martin Oschatz, and Thomas D. Kühne fpage: 10061 meta:creation-date: 2020-10-16T17:38:44Z created: 2020-10-16T17:38:44Z pdf:docinfo:custom:prism:versionIdentifier: Issue access_permission:extract_for_accessibility: true Creation-Date: 2020-10-16T17:38:44Z ACS OpenAccess Stamp: 10/20/2020 17:39:52 (AuthorChoice) JCALibraryBuild: 5.0.i3 Author: Sudhir K. Sahoo, Julian Heske, Markus Antonietti, Qing Qin, Martin Oschatz, and Thomas D. Kühne producer: Acrobat Distiller 8.1.0 (Windows); modified using iText 4.2.0 by 1T3XT pdf:docinfo:producer: Acrobat Distiller 8.1.0 (Windows); modified using iText 4.2.0 by 1T3XT pdf:unmappedUnicodeCharsPerPage: 0 dc:description: ACS Appl. Energy Mater. 2020.3:10061-10069 Keywords: electrochemical ammonia synthesis,nitrogen reduction reaction,single metal catalysis,nitrogen-doped carbon,density functional theory calculations pdf:docinfo:custom:prism:doi: 10.1021/acsaem.0c01740 access_permission:modify_annotations: true pdf:docinfo:custom:JCALibraryBuild: 5.0.i3 dc:creator: Sudhir K. Sahoo, Julian Heske, Markus Antonietti, Qing Qin, Martin Oschatz, and Thomas D. Kühne description: ACS Appl. Energy Mater. 2020.3:10061-10069 dcterms:created: 2020-10-16T17:38:44Z Last-Modified: 2020-11-06T07:43:15Z dcterms:modified: 2020-11-06T07:43:15Z title: ae0c01740 1..9 Last-Save-Date: 2020-11-06T07:43:15Z jav:journal_article_version: VoR pdf:docinfo:keywords: electrochemical ammonia synthesis,nitrogen reduction reaction,single metal catalysis,nitrogen-doped carbon,density functional theory calculations pdf:docinfo:modified: 2020-11-06T07:43:15Z meta:save-date: 2020-11-06T07:43:15Z lpage: 10069 Content-Type: application/pdf X-Parsed-By: org.apache.tika.parser.DefaultParser creator: Sudhir K. Sahoo, Julian Heske, Markus Antonietti, Qing Qin, Martin Oschatz, and Thomas D. Kühne dc:subject: electrochemical ammonia synthesis,nitrogen reduction reaction,single metal catalysis,nitrogen-doped carbon,density functional theory calculations access_permission:assemble_document: true xmpTPg:NPages: 9 pdf:charsPerPage: 4606 access_permission:extract_content: true pdf:docinfo:custom:lpage: 10069 access_permission:can_print: true prism:versionIdentifier: Issue ACS OpenAccess Version: v1.11 pdf:docinfo:custom:ACS OpenAccess Stamp: 10/20/2020 17:39:52 (AuthorChoice) meta:keyword: electrochemical ammonia synthesis,nitrogen reduction reaction,single metal catalysis,nitrogen-doped carbon,density functional theory calculations prism:doi: 10.1021/acsaem.0c01740 access_permission:can_modify: true pdf:docinfo:created: 2020-10-16T17:38:44Z