2023
DOI: 10.1021/jacs.3c06912
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Local Chemical Clustering Enabled Ultrahigh Capacitive Energy Storage in Pb-Free Relaxors

Hui Liu,
Zheng Sun,
Ji Zhang
et al.
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Cited by 18 publications
(14 citation statements)
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“…Moreover, the energy storage properties well outperform other lead-free bulk ceramics, such as BT-based, BNT-based, NN-based, and AN-based RFEs (Figure S6). ,,,, For BT-D2, a high W rec of 12.1 J cm –3 with a high η of 91.1% under an E B of 74 kV mm –1 is obtained (Figure h). The W rec achieved in BT-D2 represents the highest reported value in BT-based ceramic systems (Figure i and Table S4).…”
Section: Resultsmentioning
confidence: 96%
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“…Moreover, the energy storage properties well outperform other lead-free bulk ceramics, such as BT-based, BNT-based, NN-based, and AN-based RFEs (Figure S6). ,,,, For BT-D2, a high W rec of 12.1 J cm –3 with a high η of 91.1% under an E B of 74 kV mm –1 is obtained (Figure h). The W rec achieved in BT-D2 represents the highest reported value in BT-based ceramic systems (Figure i and Table S4).…”
Section: Resultsmentioning
confidence: 96%
“…The energy storage capacity of a dielectric material is determined by its polarization traits and breakdown strength ( E B ). Lead-free relaxor-ferroelectric (RFE) solid solutions exhibit desirable merits of large polarization ( P m ) and small hysteresis ( H ), making them the preferred option for high-performance dielectric capacitors. Owing to the high chemical flexibility of perovskites that allow for various atomic combinations at both A- and B-sites, substantial lead-free RFEs have been explored to optimize energy-storage performance. , Examples include BaTiO 3 (BT)-based, ,, Bi 0.5 K 0.5 TiO 3 (BKT)-based, SrTiO 3 (ST)-based, , Bi 0.5 Na 0.5 TiO 3 (BNT)-based, ,, (K,Na)­NbO 3 (KNN)-based, , NaNbO 3 (NN)-based, , and AgNbO 3 (AN)-based ,, relaxors, and their corresponding W rec in bulk ceramics has been significantly improved, with values typically ranging from 4 to 8 J cm –3 .…”
Section: Introductionmentioning
confidence: 99%
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