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20162022
most citedKSbOSiO microcrystallites as a source of corrosion of blue-green lead-potassium glass beads of the 19th century

10 citations · 11 across the 2 of their papers we have counts for

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cond-mat.mtrl-sci2022

Thermal-fluctuation mechanism of long-term corrosion of glass caused by internal stress: processes of depolymerization, impurity migration and fracturing on an atomic scale

Irina F. Kadikova, Tatyana V. Yuryeva, Ekaterina A. Morozova +4

Long-term corrosion of glass is studied using polarising light microscopy, FTIR and SEM including EDX and elemental mapping. Early 19th century beads made of lead-potassium glass a…

cond-mat.mtrl-sci2019

Cathodoluminescence of CdZnSSe crystals synthesized in 19th century bead glass

Tatyana V. Yuryeva, Sergey A. Malykhin, Andrey A. Kudryavtsev +3

The article presents an experimental investigation of band-edge cathodoluminescence of CdZnSSe crystals that nucleated and grew in silicate glass melt during its production. We hav…

cond-mat.mtrl-sci2017★ 1 cited

Crystallites in Color Glass Beads of the 19th Century and Their Influence on Fatal Deterioration of Glass

E. A. Morozova, I. F. Kadikova, T. V. Yuryeva +1

Glass corrosion is a crucial problem in keeping and conservation of beadworks in museums. All kinds of glass beads undergo deterioration but blue-green lead-potassium glass beads o…

cond-mat.mtrl-sci2016★ 10 cited

KSbOSiO microcrystallites as a source of corrosion of blue-green lead-potassium glass beads of the 19th century

T. V. Yuryeva, I. B. Afanasyev, E. A. Morozova +3

Presently, deterioration of glass beads is a significant problem in conservation and restoration of beaded exhibits in museums. Glass corrosion affects nearly all kinds of beads bu…