Vertical vapor phase growth of silver in a sealed quartz tube: Substrate-dependent morphologies on galvanized steel and 316L stainless steel

Sealed-tube vertical vapor phase growth (VVPG) provides a closed-system route for silver (Ag) deposition with minimal liquid waste. This study evaluates substrate-dependent Ag morphologies on galvanized steel (GS) and 316L stainless steel (SS316L) rods in the furnace transition zone (TZ), using quartz-wall (QW) condensates as witness deposits, characterised by SEM/EDS and XRD. SEM/EDS confirmed heterogeneous, discontinuous Ag-rich domains with distinct architectures on Rod–GS–TZ versus Rod–SS–TZ, indicating substrate-controlled nucleation. QW deposits indicate evaporation–transport–condensation, and XRD reveals reflections compatible with fcc-Ag. Preliminary agar diffusion screening (37 °C, 24 h; n = 3 per measurable condition) revealed inhibition limited to GS-associated specimens: Rod–GS–TZ produced a 4.65 ± 0.88 mm halo against Escherichia coli , while QW–GS–TZ yielded 1.15 ± 0.48 mm against E. coli , 3.23 ± 0.49 mm against Staphylococcus aureus , and 1.62 ± 0.23 mm against Candida albicans . Corrosion resistance was assessed separately, on a paint-coated barrier system prepared by mixing Ag-containing sediment from the VVPG-treated quartz-wall deposits into the paint before application, rather than coating the bare Ag/VVPG surfaces directly. Electrochemical screening in 3.5 wt% NaCl (manual Tafel, n = 3) reduced corrosion rates from 0.555 ± 0.126 mm·year⁻¹ (uncoated) to 0.254 ± 0.022 mm·year⁻¹ (paint-coated) and 0.0987 ± 0.0065 mm·year⁻¹ (paint-coated + Ag/VVPG), with mean E_corr of −0.676 ± 0.086 V, −0.358 ± 0.124 V, and −0.436 ± 0.023 V. Overall, sealed-tube VVPG enables substrate-dependent Ag deposition, providing preliminary evidence of selective antimicrobial response and improved, though not yet statistically resolved, corrosion performance for a paint-coated Ag/VVPG system relative to paint alone.

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Journal
Next Materials
Published
2026-09-17
DOI
https://doi.org/10.1016/j.nxmate.2026.103473
Primary Topic
Fluid Dynamics and Thin Films
Type
article
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article

Vertical vapor phase growth of silver in a sealed quartz tube: Substrate-dependent morphologies on galvanized steel and 316L stainless steel

Bambang Iskandriawan, Muhammad Akhsin Muflikhun, Gil Nonato C. Santos, Rela Adi Himarosa et al.
Next Materials
Fluid Dynamics and Thin Films
article

Vertical vapor phase growth of silver in a sealed quartz tube: Substrate-dependent morphologies on galvanized steel and 316L stainless steel

Bambang Iskandriawan, Muhammad Akhsin Muflikhun, Gil Nonato C. Santos, Rela Adi Himarosa, Gesang Nugroho, Feri Adritanto
article en

Abstract

Sealed-tube vertical vapor phase growth (VVPG) provides a closed-system route for silver (Ag) deposition with minimal liquid waste. This study evaluates substrate-dependent Ag morphologies on galvanized steel (GS) and 316L stainless steel (SS316L) rods in the furnace transition zone (TZ), using quartz-wall (QW) condensates as witness deposits, characterised by SEM/EDS and XRD. SEM/EDS confirmed heterogeneous, discontinuous Ag-rich domains with distinct architectures on Rod–GS–TZ versus Rod–SS–TZ, indicating substrate-controlled nucleation. QW deposits indicate evaporation–transport–condensation, and XRD reveals reflections compatible with fcc-Ag. Preliminary agar diffusion screening (37 °C, 24 h; n = 3 per measurable condition) revealed inhibition limited to GS-associated specimens: Rod–GS–TZ produced a 4.65 ± 0.88 mm halo against Escherichia coli , while QW–GS–TZ yielded 1.15 ± 0.48 mm against E. coli , 3.23 ± 0.49 mm against Staphylococcus aureus , and 1.62 ± 0.23 mm against Candida albicans . Corrosion resistance was assessed separately, on a paint-coated barrier system prepared by mixing Ag-containing sediment from the VVPG-treated quartz-wall deposits into the paint before application, rather than coating the bare Ag/VVPG surfaces directly. Electrochemical screening in 3.5 wt% NaCl (manual Tafel, n = 3) reduced corrosion rates from 0.555 ± 0.126 mm·year⁻¹ (uncoated) to 0.254 ± 0.022 mm·year⁻¹ (paint-coated) and 0.0987 ± 0.0065 mm·year⁻¹ (paint-coated + Ag/VVPG), with mean E_corr of −0.676 ± 0.086 V, −0.358 ± 0.124 V, and −0.436 ± 0.023 V. Overall, sealed-tube VVPG enables substrate-dependent Ag deposition, providing preliminary evidence of selective antimicrobial response and improved, though not yet statistically resolved, corrosion performance for a paint-coated Ag/VVPG system relative to paint alone.

Next MaterialsVol. 13
Sebelas Maret University (ID), Universitas Gadjah Mada (ID), Sepuluh Nopember Institute of Technology (ID), Muhammadiyah University of Yogyakarta (ID)
Openalex Percentile: Top 14%
Fluid Dynamics and Thin Films
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