Preparation of Face-Centered Cubic Fullerene Nanosheets via Liquid-Phase Exfoliation and Intercalation for Enhanced Photoelectrochemical Photodetectors.

Huang, Jie; Wu, Minghao; Yan, Jiahao; Zhu, Xueni; Hu, Peng; Sun, Jie; Li, Qi; Lei, Zhibin et al. · ACS Nano · 2025

basic_science · Level V

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Abstract

Fullerene (C<sub>60</sub>) is considered to have great potential for the construction of high-performance electronic and photonic devices due to its highly conjugated molecular structure, high electron receptivity, and three-dimensional (3D) electron transport properties. We demonstrate a strategy for fabricating face-centered cubic (FCC) C<sub>60</sub> nanosheets stacked by van der Waals forces through liquid-phase exfoliation. This approach aims to further investigate the unique structure of the C<sub>60</sub> network and its potential applications in photoelectronics. Tetrabutylammonium hydroxide solution is utilized as the liquid-phase exfoliation (LPE) solvent to delaminate layered FCC C<sub>60</sub> crystals, resulting in FCC C<sub>60</sub> nanosheets (FC<sub>60</sub> NSs). The FC<sub>60</sub> NSs preserve the high crystallinity and FCC stacking structure of C<sub>60</sub> crystals, and their structure and physical properties can be modulated. Specifically, tetrabutylammonium ion (TBA<sup>+</sup>) intercalation is employed to adjust the band structure of FC<sub>60</sub> NSs. Compared with untreated FC<sub>60</sub> NSs, the performance of the TBA<sup>+</sup> intercalated FCC C<sub>60</sub> nanosheets (I-FC<sub>60</sub> NSs)-based photoelectrochemical photodetector is significantly enhanced, with a responsivity (<i>R</i>) of 1.41 mA/W, detectivity (<i>D</i>*) of 2.18 × 10<sup>10</sup> Jones, response time of <i>t</i><sub>r</sub> = 1.26 s, and <i>t</i><sub>d</sub> = 2.52 s. The characteristics of easy adjustment of the properties of this material are expected to be optimized for different fields, reflecting the great potential of FC<sub>60</sub> NSs in the development of optoelectronic materials.