私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

相關鏈接
聯系方式
  • 通信地址:上海市寶山區南陳路333號材料樓316
  • 郵編:200444
  • 電話:021-
  • 傳真:
  • Email:liyunbo@shu.edu.cn
當前位置:> 首頁 > 論文著作 > 正文
Highly recyclable gold nanoparticle films on lithium-ion battery separator for efficient catalytic conversion: Insights from 2D correlation spectroscopy analysis
作者:Lingui Hu; Yulu Ye; Tuo Li; Minqiang Xia; Yunbo Li *
關鍵字:Gold nanoparticles Nitrophenol Lithium-ion battery separator Film catalyst Two-dimensional correlation spectroscopy
論文來源:期刊
具體來源:Journal of Environmental Chemical Engineering 2025, 13, 117341
發表時間:2025年

To develop highly recyclable and efficient catalytic materials is

pivotal for sustainable treatment of wastewater. Herein, gold

nanoparticle (AuNP) films immobilized on a lithium-ion battery separator

were fabricated via a facile vacuum filtration method, demonstrating

exceptional catalytic activity and recyclability for the conversion of

nitrophenols and azo dyes. This porous separator architecture provided

abundant anchoring sites for AuNPs, enabling rapid substrate diffusion

and minimizing nanoparticle aggregation. Under optimized conditions

(1000?mM NaBH?), the AuNP film achieved complete catalytic conversion of

2-nitrophenol to 2-aminophenol within 36?min. Remarkably, the film

retained >?98?% efficiency over 8 consecutive cycles, underscoring

its robust reusability. Two-dimensional correlation spectroscopy

(2D-COS) elucidated the reaction mechanism, revealing that

nitrophenolate ions (415?nm) dominated the conversion kinetics, followed

by the slower formation of aminophenol (295?nm). The AuNP film also

exhibited versatility, converting 4-nitrophenol (32?min), methylene blue

(8?min), and methyl orange (15?min) efficiently. The synergy between

the separator’s hierarchical porosity and AuNP’s catalytic activity

facilitated electron transfer and active hydrogen generation. This work

presents a scalable, low-cost strategy for industrial pollutant

remediation, leveraging recyclable AuNP films and advanced spectroscopic

analysis to bridge material design and environmental application.

主站蜘蛛池模板: 古蔺县| 井冈山市| 延安市| 原阳县| 济南市| 乡城县| 萨嘎县| 增城市| 班玛县| 章丘市| 阿坝县| 黄石市| 白玉县| 廉江市| 错那县| 奇台县| 吕梁市| 漳州市| 巨野县| 洪雅县| 林口县| 灵璧县| 建阳市| 清河县| 青冈县| 梅河口市| 金溪县| 青州市| 靖宇县| 历史| 山东| 西畴县| 盐津县| 太康县| 宣恩县| 沧州市| 同心县| 蒙山县| 公主岭市| 黑山县| 河东区|