Unlocking the Potential of Ni2+ and Ni2+-Cr3+ Synergy for Bifunctional Pressure and Temperature Optical Sensing
M. Szymczak, L. Marciniak

TL;DR
This paper introduces a novel Ni2+-Cr3+ luminescence system for simultaneous, decoupled pressure and temperature sensing, achieving high sensitivity and immunity to cross-sensitivity in extreme conditions.
Contribution
It demonstrates the first use of Ni2+ ions in near-infrared luminescence manometry and develops dual detection strategies for bifunctional sensing with record sensitivities.
Findings
Record-high pressure sensitivity of 148.33% GPa-1
Complete immunity of pressure readout to temperature fluctuations
Successful application of Ni2+ in near-infrared luminescence sensing
Abstract
Reliable simultaneous optical sensing of pressure and temperature under extreme and dynamically fluctuating conditions remains a major challenge due to intrinsic cross-sensitivity between these two thermodynamic parameters. Multimodal systems enabling simultaneous yet fully decoupled monitoring of both parameters are therefore highly sought after. Here, we demonstrate that the synergistic interplay between Cr3+ and Ni2+ luminescence provides a platform for bifunctional temperature-pressure sensing with independent readout channels. Two complementary detection strategies were systematically investigated: ratiometric approach based on luminescence intensity ratio and kinetic approaches exploiting emission decay dynamics. Among the kinetic strategies, a time-gated dual-ion lifetime concept - introduced here for the first time for luminescence manometry - enables pressure readout with…
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Taxonomy
TopicsLuminescence Properties of Advanced Materials · Luminescence and Fluorescent Materials · Analytical Chemistry and Sensors
