Revealing the Hidden Role of Radical Scavengers: Unraveling the Key to Tailoring the Formation of the hcp PdHx Phase in Graphene Liquid Cells
  • Hong, Jaeyoung
  • Kim, Juyoung
  • Bae, Jee-Hwan
  • Jin, Haneul
  • Lee, Su Kyong
  • 외 3명
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초록

Radiation chemistry enables the synthesis of colloidal nanoparticles without chemical reducing agents, yielding metal nanoparticles via simple and direct processes. Aliphatic alcohols are widely used to promote the formation of nanoparticles in radiolytic synthesis by inhibiting the reoxidation of these metal nanoparticles by scavenging hydroxyl radicals. However, the role of the scavenger has been limited to simply accelerating the formation of the nanoparticles without altering their nature. Herein, the role of radical scavengers is investigated in determining the type of metal nanoparticles formed, with the scavenger concentration playing a crucial role. It is found that the addition of isopropyl alcohol controls the formation of hexagonal close-packed (hcp) palladium hydride (PdHx) nanoparticles that are previously synthesized for the first time via radiation chemistry by increasing the concentrations of hydrated electrons and hydrogen radicals. This discovery reveals a more active role for radical scavengers in radiolytic syntheses, and this strategy can be used for the cost-effective mass production of hcp PdHx nanoparticles.

키워드

graphene liquid cellhcp palladium hydridein situ TEMradiation chemistryradical scavengerradiolysis productRADIOLYTIC SYNTHESISNANOPARTICLESNUCLEATIONCLUSTERSHYDRIDEGROWTHIRRADIATION
제목
Revealing the Hidden Role of Radical Scavengers: Unraveling the Key to Tailoring the Formation of the hcp PdHx Phase in Graphene Liquid Cells
저자
Hong, JaeyoungKim, JuyoungBae, Jee-HwanJin, HaneulLee, Su KyongLee, Kyu HyoungLee, Young-SuChun, Dong Won
DOI
10.1002/adfm.202311293
발행일
2024-06
유형
Article
저널명
Advanced Materials for Optics and Electronics
34
23