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Electron-Induced Reactions in Solid Carbon Dioxide: Lithography and Methane Formation under High-Energy Irradiation

delete2026-06-12
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PRE
AI
R
Rui Zheng
K
Kang Zhao
L
Limin Qi
D
Ding Zhao *
M
Min Qiu *
DOI:10.1021/acsami.6c07591delete
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Abstract

Abstract

En 中文
Ice-assisted electron-beam lithography (iEBL) utilizes cryogenic ice layers as resists for micro/nanofabrication. Water ice, the most widely used positive-tone resist, exhibits a high critical dose that limits lithographic efficiency. Here, we investigate solid carbon dioxide (CO2) as a potential alternative. Lithographic characterization via SEM shows that solid CO2 has a critical dose an order of magnitude lower than that of water ice. To investigate electron-induced chemical pathways, mixed cryogenic CO2/H2O ices were irradiated with a 10 MeV linear electron beam. Volatile products were monitored in situ using quadrupole mass spectrometry. Hydrogen and methane were detected as reaction products, with methane formation strongly dependent on the repetition frequency. These results establish CO2 as a promising resist material and provide mechanistic insight into electron-stimulated decomposition in iEBL.
Keywords:
Hydrocarbons
Inorganic carbon compounds
Irradiation
Oxides
Thermodynamic properties
electron-beam lithography
ice-assisted electron-beam lithography
solid carbon dioxide
high-energy irradiation
electron-induced reaction

Journal

A
ACS Applied Materials & Interfaces
IF:
0
Papers:
1.6K
Citations:
0

Organization

W
Westlake University
Scholars:
1.5K
Papers: 570
Citations: 8.9K
W
Westlake Institute for Optoelectronics
Scholars:
40
Papers: 33
Citations: 0
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