MoS₂ appears in the source digest as the substrate for a 2025 result on voltage-controlled interfacial chirality. Huang et al. reported inducing chirality at the interface of an otherwise achiral molybdenum disulfide surface using an electric double-layer transistor with enantiopure ionic liquids. The induced state was detected through Chirality-Induced Spin Selectivity (CISS) (CISS) and the electrical magnetochiral effect.
The citation given is Huang, Po-Jung; Ando, Yoshio; Tanaka, Miuko; Nishio, Yukito; Ideue, Toshiya; Taniguchi, Kouji, "Proximity-induced chirality at the achiral conductive interface by electrical control of enantiopure ion adsorption," Science Advances 11 (47) eadx2281, 21 November 2025 (doi:10.1126/sciadv.adx2281).
The result is notable because the chirality is induced electrically on a surface that is not intrinsically chiral, and because it is detected through two independent transport signatures — CISS and the electrical magnetochiral effect.
Source notes & attribution
- https://rexresearch.com/CISSMetamaterial/CISSMetamaterial.html