拉曼光谱
材料科学
光谱学
表面增强拉曼光谱
荧光光谱法
降级(电信)
分析化学(期刊)
矿物学
矿物
荧光
保护科学
文化遗产
残余物
纳米技术
红外光谱学
成核
解码
分辨率(逻辑)
分析技术
铜
拉曼散射
氮气
化学工程
作者
Jinchang Xu,Qing Xiao,Yuanyuan Niu,Xiao Zhang,Xiao Zhang,Min Hu,Q. N. Sun,Feng He,Guangyou Fang,Jianbo Guo,Hui Zhang,Xiaoqiuyan Zhang,Xiaoqiuyan Zhang,Zhenyou Wang
标识
DOI:10.1021/acsami.5c18910
摘要
Archaeological ivories are of great cultural significance but pose analytical challenges due to heterogeneous surface composition and intense fluorescence. In this study, 532 nm time-gated Raman spectroscopy was employed to overcome these limitations, enabling high spatial resolution and effective fluorescence suppression for detailed compositional analysis. Four ivory samples from Sacrificial Pits No. 3 (K3) and No. 7 (K7) exhibited markedly different preservation states. K3 samples showed evidence of copper corrosion, lower fluorescence intensity, and greater calcium loss, while K7 samples suffered from more severe sulfate-driven hydroxyapatite degradation. Sulfate substitution was found closely associated with phosphate peak broadening and surface discoloration, identifying it as a key indicator of mineral deterioration. Residual protein was detected in all specimens, with K3 samples retaining higher nitrogen content. These results demonstrate the strength of time-gated Raman spectroscopy for nondestructive, spatially resolved analysis of ancient ivory and reveal degradation pathways shaped by burial microenvironments─offering essential insights for the scientific conservation of archeological ivory.
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