Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/48619
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dc.contributor.authorDONG, Ximan-
dc.contributor.authorLi, Pei-
dc.contributor.authorChen, Xinyue-
dc.contributor.authorChu, Yue-
dc.contributor.authorZubtsovskii, Aleksandr-
dc.contributor.authorZhang , Chuyan-
dc.contributor.authorLu, Ziyang-
dc.contributor.authorLI, Changli-
dc.contributor.authorLIU, Shuang-
dc.contributor.authorHoffmann, Renee S.-
dc.contributor.authorHuang, Nan-
dc.contributor.authorSchonherr, Holger-
dc.contributor.authorYang, Quan-Hong-
dc.contributor.authorJiang , Xin-
dc.contributor.authorYANG, Nianjun-
dc.date.accessioned2026-02-26T09:18:51Z-
dc.date.available2026-02-26T09:18:51Z-
dc.date.issued2026-
dc.date.submitted2026-02-24T13:55:22Z-
dc.identifier.citationEnergy storage materials, 86 (Art N° 104932)-
dc.identifier.urihttp://hdl.handle.net/1942/48619-
dc.description.abstractAmmonium-ion hybrid supercapacitors (AIHSs) hold great promises for high-rate energy storage, yet their performance is often restricted by sluggish ion transport and the structural instability of electrode materials. Here, we present a rapid and scalable electrodeposition strategy operated at an unusually high overpotential (-2.5 V) to fabricate amorphous tungsten oxide (a-WO3) with nanocrystallites irregularly stacked. The asdeposited a-WO3 also features abundant oxygen vacancies and surface oxygen-containing functional groups, which serve as additional NH4+ adsorption sites and enhance redox activity and ion diffusion kinetics. Benefiting from these synergistic effects, the a-WO3 electrode delivers a high areal capacitance of 2783 mF cm-2, excellent rate capability, and superior cycling stability. When coupled with a polyaniline (PANI) cathode, the resulting AIHS achieves an impressive energy density of 620 mu Wh cm-2. This work demonstrates a powerful strategy for engineering defect-rich amorphous nanomaterials toward next-generation ammonium-ion storage technologies.-
dc.description.sponsorshipX.D. thanks the China Scholarship Council (CSC) for the financial support (No. 202106250006) and BOF Project R-14966. X.C. thanks the China Scholarship Council (CSC) for the financial support (No. 202008420219). C.L. thanks the financial support from the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under the Project No. 457444676 and BOF Project R-14967. Part of this work was performed at the Micro- and Nanoanalytics Facility (MNaF) at the University of Siegen.-
dc.language.isoen-
dc.publisherELSEVIER-
dc.rights2026 Elsevier B.V. All rights are reserved, including those for text and data mining, AI training, and similar technologies-
dc.subject.otherAmmonium-ion storage-
dc.subject.otherTungsten oxide-
dc.subject.otherNon-metal charge carriers-
dc.subject.otherFolded nanocrystalline-stacked structure-
dc.titleFolded nanocrystalline-stacked WO3 for efficient ammonium-ion storage-
dc.typeJournal Contribution-
dc.identifier.volume86-
local.format.pages11-
local.bibliographicCitation.jcatA1-
dc.description.notesYang, NJ (corresponding author), Hasselt Univ, Dept Chem, Agoralaan 1, B-3590 Diepenbeek, Belgium.; Jiang, X (corresponding author), Univ Siegen, Inst Mat Engn, Paul Bonatz Str 9-11, D-57076 Siegen, Germany.-
dc.description.notesnianjun.yang@uhasselt.be; jiang@lot.mb.uni-siegen.de-
local.publisher.placeRADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS-
local.type.refereedRefereed-
local.type.specifiedArticle-
local.bibliographicCitation.artnr104932-
dc.identifier.doi10.1016/j.ensm.2026.104932-
dc.identifier.isi001683614000001-
local.provider.typewosris-
local.description.affiliation[Dong, Ximan; Li, Changli; Liu, Shuang; Yang, Nianjun] Hasselt Univ, Dept Chem, Agoralaan 1, B-3590 Diepenbeek, Belgium.-
local.description.affiliation[Dong, Ximan; Li, Changli; Liu, Shuang; Yang, Nianjun] Hasselt Univ, IMO IMOMEC, Wetenschapspk 1, B-3590 Diepenbeek, Belgium.-
local.description.affiliation[Dong, Ximan; Chen, Xinyue; Zubtsovskii, Aleksandr; Li, Changli; Jiang, Xin] Univ Siegen, Inst Mat Engn, Paul Bonatz Str 9-11, D-57076 Siegen, Germany.-
local.description.affiliation[Li, Pei] Univ Maryland, Dept Chem & Biomol Engn, College Pk, MD 20770 USA.-
local.description.affiliation[Chu, Yue] Tsinghua Univ, Engn Lab Functionalized Carbon Mat Grad Sch Shenzh, Shenzhen Key Lab Graphene Based Mat, Shenzhen 518055, Peoples R China.-
local.description.affiliation[Zhang, Chuyan; Huang, Nan] Univ Sci & Technol China, Sch Mat Sci & Engn, 72 Wenhua Rd, Shenyang 110016, Peoples R China.-
local.description.affiliation[Lu, Ziyang; Yang, Quan-Hong] Tianjin Univ, Sch Chem Engn & Technol, Tianjin Key Lab Adv Carbon & Electrochem Energy St, Nanoyang Grp, Tianjin 300350, Peoples R China.-
local.description.affiliation[Hoffmann, Renee S.; Schonherr, Holger] Univ Siegen, Phys Chem & Res Ctr Micro & Nanochem & Bio Technol, Sch Sci & Technol, Dept Chem & Biol, D-57075 Siegen, Germany.-
local.uhasselt.internationalyes-
item.fullcitationDONG, Ximan; Li, Pei; Chen, Xinyue; Chu, Yue; Zubtsovskii, Aleksandr; Zhang , Chuyan; Lu, Ziyang; LI, Changli; LIU, Shuang; Hoffmann, Renee S.; Huang, Nan; Schonherr, Holger; Yang, Quan-Hong; Jiang , Xin & YANG, Nianjun (2026) Folded nanocrystalline-stacked WO3 for efficient ammonium-ion storage. In: Energy storage materials, 86 (Art N° 104932).-
item.accessRightsEmbargoed Access-
item.fulltextWith Fulltext-
item.embargoEndDate2026-09-01-
item.contributorDONG, Ximan-
item.contributorLi, Pei-
item.contributorChen, Xinyue-
item.contributorChu, Yue-
item.contributorZubtsovskii, Aleksandr-
item.contributorZhang , Chuyan-
item.contributorLu, Ziyang-
item.contributorLI, Changli-
item.contributorLIU, Shuang-
item.contributorHoffmann, Renee S.-
item.contributorHuang, Nan-
item.contributorSchonherr, Holger-
item.contributorYang, Quan-Hong-
item.contributorJiang , Xin-
item.contributorYANG, Nianjun-
crisitem.journal.issn2405-8297-
crisitem.journal.eissn2405-8289-
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