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◆ Nanoscale2026-09-01

Niobium-doped ZnO: an excellent multifunctional energy material.

Anindita Mukherjee, Barnali Dasgupta Ghosh, Sunanda Roy

原始摘要(英文原文)· Original abstract
Doping provides an interesting pathway for designing highly electroactive fillers in metal oxides for application in self-powered energy materials. The presence of dopants in metal oxides such as zinc oxide (ZnO) modifies their energy storage and harvesting performance. Thus, here we produced niobium (Nb)-doped ZnO or Zn1-xNbxO (x = 0, 0.01, 0.02, and 0.03) nanorods using a facial hydrothermal method. Interestingly, Nb doping in ZnO improved the crystallinity and induced the growth of uniaxial nanorods, particularly for 2 wt% Nb-doped ZnO (Zn0.98Nb0.02O). This composition showed maximum energy storage density (37 J cm-3), energy storage efficiency (82.23%), and dielectric constant (880), with low dielectric loss, outperforming undoped ZnO and the other Nb-doped variants, thereby indicating its good capacitance behavior. In terms of its piezoelectric properties, Zn0.98Nb0.02O showed an exceptional piezoelectric coefficient (d33 = 513 pm V-1), output voltage (Voc = 18 V) and power density (6.75 µWcm-2). The piezoelectric nanogenerator (PENG) based on this material displayed excellent durability corresponding for 216000 cycles, storing around 1.68 μJ of energy for a 2.2 μF capacitor. In terms of energy-harvesting applications, this material displayed appreciable output voltage for various biomechanical movements like finger tapping, hand clutching, clapping and wrist pressing. Thus, the fabrication of Nb-doped ZnO lays the groundwork for the development of excellent energy storage and conversion devices.
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Niobium-doped ZnO: an excellent multifunctional energy material. — 科研速览 Science Skim