TY - JOUR
T1 - Polyoxometalate-based one-dimensional subnanomaterials
AU - Qin, Yifan
AU - Ma, Rongzhu
AU - Zhang, Simin
N1 - Publisher Copyright:
© The author(s) 2026. Published by Tsinghua University Press.
PY - 2026/3
Y1 - 2026/3
N2 - One-dimensional (1D) subnanomaterials (SNMs), including subnanowires (SNWs) and subnanobelts (SNBs), have diameters or thicknesses comparable to the unit cell size and exhibit polymer-like properties, such as rheology, gelling, and adhesion, owing to their dimensional similarity to polymer chains. Originally, single-component 1D SNMs were dominant, but the development of the cluster-nuclei coassembly (CNCA) strategy has enabled the fabrication of various polyoxometalate (POM)-based 1D SNMs with precisely controlled compositions and structures. In this review, a variety of SNWs and SNBs, including POM, metal cluster-POM, metal cation-POM, metal oxide-POM, metal sulfide-POM, and high-entropy oxide-POM materials, are discussed, paying particular attention to their synthesis, programmable structures, polymer‐ like properties, and excellent performance in gelling, adhesion, catalysis, polarization, and photothermal conversion applications. Moreover, the outstanding processability of 1D SNMs, which enables the construction of macroscale assemblies with expanded applicability, such as fibers, films, and gels, is described. Finally, challenges and future directions are discussed, providing new viewpoints on the development and applications of POM-based 1D SNMs.
AB - One-dimensional (1D) subnanomaterials (SNMs), including subnanowires (SNWs) and subnanobelts (SNBs), have diameters or thicknesses comparable to the unit cell size and exhibit polymer-like properties, such as rheology, gelling, and adhesion, owing to their dimensional similarity to polymer chains. Originally, single-component 1D SNMs were dominant, but the development of the cluster-nuclei coassembly (CNCA) strategy has enabled the fabrication of various polyoxometalate (POM)-based 1D SNMs with precisely controlled compositions and structures. In this review, a variety of SNWs and SNBs, including POM, metal cluster-POM, metal cation-POM, metal oxide-POM, metal sulfide-POM, and high-entropy oxide-POM materials, are discussed, paying particular attention to their synthesis, programmable structures, polymer‐ like properties, and excellent performance in gelling, adhesion, catalysis, polarization, and photothermal conversion applications. Moreover, the outstanding processability of 1D SNMs, which enables the construction of macroscale assemblies with expanded applicability, such as fibers, films, and gels, is described. Finally, challenges and future directions are discussed, providing new viewpoints on the development and applications of POM-based 1D SNMs.
KW - applications
KW - cluster-nuclei co–assembly strategy
KW - polyoxometalates
KW - subnanobelts
KW - subnanowires
UR - https://www.scopus.com/pages/publications/105035056625
U2 - 10.26599/POM.2026.9140117
DO - 10.26599/POM.2026.9140117
M3 - Review article
AN - SCOPUS:105035056625
SN - 2957-9821
VL - 5
JO - Polyoxometalates
JF - Polyoxometalates
IS - 1
M1 - 9140117
ER -