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Nanoporous GaN-Ag Composite Materials Prepared by Metal-Assisted Electroless Etching for Direct Laser Desorption-lonization Mass Spectrometry

机译:金属辅助化学刻蚀直接激光解吸电离质谱法制备纳米多孔GaN-Ag复合材料

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摘要

Three-dimensional nanoporous gallium nitride-(PGaN) produced by metal-assisted electroless etching is chemically embedded with silver nanoparticles via electroless deposition, forming a metallized semiconductor membrane with large surface area and nanoscale metal features. A new application utilizing the unique chemical and morphological features of these composite nanostructures is described here, laser induced desorption-ionization(LDI) of biomolecules(e.g., cholesterol and nucleotides) for direct mass analysis, without use of additional organic matrix. Although PGaN itself is a poor matrix for direct LDI mass spectrometry, the combination of Ag and PGaN greatly improves ion signals relative to PGaN or Ag nanostructure surfaces alone. This behavior is attributed to the combination of strong UV absorption, enhanced surface area, and favorable thermal properties of PGaN. Importantly, Ag-PGaN is shown to facilitate the formation of Ag adduct ions in some cases, for example adenine, where adducts are not observed from either porous anodic aluminum membranes or surfaces presenting Ag nanoparticles in isolation. Nanopore-embedded Ag nanostructures serve a dual role: as cationization agents and to assist thermal desorption under UV laser irradiation. The results reported here suggest that the combination of Ag nanostructures embedded in PGaN has the capacity for high quality matrix-free LDI mass analysis.
机译:通过金属辅助化学蚀刻产生的三维纳米多孔氮化镓(PGaN)通过化学沉积与银纳米颗粒化学包埋,形成具有大表面积和纳米级金属特征的金属化半导体膜。本文介绍了利用这些复合纳米结构独特的化学和形态学特征的新应用,即直接诱导质量分析的生物分子(例如胆固醇和核苷酸)的激光诱导解吸电离(LDI),而无需使用其他有机基质。尽管PGaN本身对于直接LDI质谱而言是不良的基质,但与单独的PGaN或Ag纳米结构表面相比,Ag和PGaN的组合极大地改善了离子信号。此行为归因于强大的紫外线吸收,增加的表面积以及PGaN的良好热性能。重要的是,在某些情况下,例如,腺嘌呤,显示出Ag-PGaN有助于形成Ag加合物离子,在这种情况下,从多孔阳极铝膜或孤立存在Ag纳米颗粒的表面均未观察到加合物。纳米孔嵌入的银纳米结构具有双重作用:作为阳离子化剂,并有助于在紫外线激光照射下进行热脱附。此处报道的结果表明,嵌入PGaN中的Ag纳米结构的组合具有进行高质量无基质LDI质量分析的能力。

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