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Commercialization is hindered by the poor stability of halide perovskite inks, precursors, and devices.
Currently, the poor stability of perovskite solar cells is a barrier to commercialisation.
However, poor stability of the existing cationic polyacrylamide has limited its application.
However, poor stability of the encapsulation systems after implantation remains a challenge.
However, the low concentration and poor stability of silver nanoparticles in aqueous solution limit their wide applications.
However, the poor stability of this enzyme under the reaction conditions is a drawback of its industrial application.
On the other hand, the poor stability of perovskite under normal conditions has limited its wider industrial applications.
However, the poor stability of MoS2 due to the weak interaction with conductive support and current collector significantly hinders its performance in LIBs.
However, the poor stability of CsSnX3 perovskites has so far prevented the fabrication of devices that can withstand sustained operation under normal conditions.
Owing to the poor stability of catechin monomers in alkaline conditions, a 50 mM Britton Robinson buffer at a pH 2.50 was preferred as the background electrolyte.
However, the commercialization of PEC cells is currently hampered by the low light-absorption efficiency and poor stability of conventional photoanode materials.
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