Pujun Jin
Biographic Data
| ID | 149726 |
|---|---|
| NAME | Pujun Jin |
| GIVEN NAMES | Pujun |
| FAMILY NAME | Jin |
| SIGNATURE | JIN P |
| AFFILIATIONS | Shaanxi Normal University |
| ORCID | 0000-0003-0031-968X |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 6 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2012 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 2 |
Hydrophobic interface delaying wet-heat aging of acidified paper by reducing oxidation and acid hydrolysis rates of cellulose
Enhancing capillary action of acidified paper to achieve uniform deacidification and long-lasting aging resistance
Chemical and microscopic investigation of historical wall bricks collected from the City Wall of Xi'an, China
Microstructural and Componential Characterization of the Plating Technology on Chinese Han Dynasty Bronze Fragments
The bronze wares of the Han Dynasty excavated in Chongqing are decorated with plating patterns, maintaining an exquisite lustre right up to modern times after the covering patina is cleared away. In this paper, a plated fragment of the Han Dynasty from the Wushan County Museum was characterized by combining optical microscopy (OM), scanning electron microscopy with X‐ray energy‐dispersive spectrometry (SEM–EDS), X‐ray fluorescence analysis (XRF),…
Research on the Pigments From Painted Ceramics Excavated From the Yangqiaopan Tombs of the Late Han Dynasty (48 Bc – Ad 25)
The analysis of pigments on painted ceramics excavated from the Yangqiaopan Tombs of the late Western Han Dynasty was undertaken using optical microscopy (OM), micro‐Raman spectroscopy (μ‐RS), scanning electron microscopy with energy‐dispersive X‐ray spectrometry (SEM–EDS), X‐ray diffraction (XRD) and Fourier‐transform infrared spectroscopy spectra (FTIR). The pigments were identified as red lead (Pb 3 O 4 ), carbon (C), malachite [Cu 2 CO 3 (OH)…
Microstructural and Componential Characterization of the Plating Technology on Chinese Han Dynasty Bronze Fragments
The bronze wares of the Han Dynasty excavated in Chongqing are decorated with plating patterns, maintaining an exquisite lustre right up to modern times after the covering patina is cleared away. In this paper, a plated fragment of the Han Dynasty from the Wushan County Museum was characterized by combining optical microscopy (OM), scanning electron microscopy with X‐ray energy‐dispersive spectrometry (SEM–EDS), X‐ray fluorescence analysis (XRF),…
Enhancing capillary action of acidified paper to achieve uniform deacidification and long-lasting aging resistance
Research on the Pigments From Painted Ceramics Excavated From the Yangqiaopan Tombs of the Late Han Dynasty (48 Bc – Ad 25)
The analysis of pigments on painted ceramics excavated from the Yangqiaopan Tombs of the late Western Han Dynasty was undertaken using optical microscopy (OM), micro‐Raman spectroscopy (μ‐RS), scanning electron microscopy with energy‐dispersive X‐ray spectrometry (SEM–EDS), X‐ray diffraction (XRD) and Fourier‐transform infrared spectroscopy spectra (FTIR). The pigments were identified as red lead (Pb 3 O 4 ), carbon (C), malachite [Cu 2 CO 3 (OH)…
Microstructural and Componential Characterization of the Plating Technology on Chinese Han Dynasty Bronze Fragments
The bronze wares of the Han Dynasty excavated in Chongqing are decorated with plating patterns, maintaining an exquisite lustre right up to modern times after the covering patina is cleared away. In this paper, a plated fragment of the Han Dynasty from the Wushan County Museum was characterized by combining optical microscopy (OM), scanning electron microscopy with X‐ray energy‐dispersive spectrometry (SEM–EDS), X‐ray fluorescence analysis (XRF),…
Chemical and microscopic investigation of historical wall bricks collected from the City Wall of Xi'an, China
Enhancing capillary action of acidified paper to achieve uniform deacidification and long-lasting aging resistance
Hydrophobic interface delaying wet-heat aging of acidified paper by reducing oxidation and acid hydrolysis rates of cellulose
Composite material (4 works) · Materials Science (4 works) · Metallurgy (3 works) · Advanced Cellulose Research Studies (2 works) · Building materials and conservation (2 works) · Cultural Heritage Materials Analysis (2 works) · Mineralogy (2 works) · Physics (2 works) · Scanning electron microscope (2 works) · Absorption of water (1 works)