A Highly Selective Fiber-Optic Surface Plasmon Resonance Sensor Based on an alkaline MXene/Layered Double Hydroxide Hybrid for Trace-Level Detection of Ni(II)

Abstract A highly selective fiber-optic surface plasmon resonance (SPR) sensor was developed for trace detection of Ni2+. A gold nanolayer was deposited onto a single-mode optical fiber, yielding a refractive index sensitivity of 1925.9 nm/RIU. An alkaline MXene/layered double hydroxide (alk-MXene/LDH) hybrid structure was subsequently fabricated via mechanical self-assembly using a two-dimensional Ti3C2 MXene substrate and immobilized on the SPR sensing interface for selective Ni2+ detection. Benefiting from the layered structure of LDH and the abundant oxygen-containing functional groups on MXene, the composite effectively adsorbs and enriches Ni2+, thereby enhancing the sensing response. The sensor exhibits a sensitivity of 4.7 nm/(μg·mL–1) over a concentration range of 0–4 μg/mL with a limit of detection of 5.6 × 10–2 μg/mL. These results demonstrate its applicability for trace heavy metal ion detection in environmental and industrial water systems and provide a strategy for the development of high-performance, cost-effective sensing platforms.

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Publication Details

Journal
Langmuir
Published
2026-09-24
DOI
https://doi.org/10.1021/acs.langmuir.6c04325
Primary Topic
MXene and MAX Phase Materials
Type
article
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A Highly Selective Fiber-Optic Surface Plasmon Resonance Sensor Based on an alkaline MXene/Layered Double Hydroxide Hybrid for Trace-Level Detection of Ni(II)

练建安, Ye Wu, Chenwei Wang, Shuo Yang et al.
Langmuir
MXene and MAX Phase Materials
article

A Highly Selective Fiber-Optic Surface Plasmon Resonance Sensor Based on an alkaline MXene/Layered Double Hydroxide Hybrid for Trace-Level Detection of Ni(II)

练建安, Ye Wu, Chenwei Wang, Shuo Yang, Ming Cheng, Wenlong Yang, Xiangui Liu, Shi Feng
article en

Abstract

Abstract A highly selective fiber-optic surface plasmon resonance (SPR) sensor was developed for trace detection of Ni2+. A gold nanolayer was deposited onto a single-mode optical fiber, yielding a refractive index sensitivity of 1925.9 nm/RIU. An alkaline MXene/layered double hydroxide (alk-MXene/LDH) hybrid structure was subsequently fabricated via mechanical self-assembly using a two-dimensional Ti3C2 MXene substrate and immobilized on the SPR sensing interface for selective Ni2+ detection. Benefiting from the layered structure of LDH and the abundant oxygen-containing functional groups on MXene, the composite effectively adsorbs and enriches Ni2+, thereby enhancing the sensing response. The sensor exhibits a sensitivity of 4.7 nm/(μg·mL–1) over a concentration range of 0–4 μg/mL with a limit of detection of 5.6 × 10–2 μg/mL. These results demonstrate its applicability for trace heavy metal ion detection in environmental and industrial water systems and provide a strategy for the development of high-performance, cost-effective sensing platforms.

Langmuir
Harbin University of Science and Technology (CN), Harbin Normal University (CN), Xi’an Jiaotong-Liverpool University (CN)
Openalex Percentile: Top 25%
MXene and MAX Phase Materials
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A Highly Selective Fiber-Optic Surface Plasmon Resonance Sensor Based on an alkaline MXene/Layered Double Hydroxide Hybrid for Trace-Level Detection of Ni(II) — 练建安, Ye Wu, et al. · Langmuir (2026) | TGRS Research Map | TGRS