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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Realizing ultrahigh recoverable energy density and superior charge-discharge performance in NaNbO3-based lead-free ceramics via a local random field strategy
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Realizing ultrahigh recoverable energy density and superior charge-discharge performance in NaNbO3-based lead-free ceramics via a local random field strategy

机译:通过局部随机场策略实现纳沃3基无铅陶瓷中的超高恢复能量密度和卓越的充放电性能

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摘要

The development and use of high-performance and environmentally friendly energy storage capacitors are urgently demanded. Despite extensive research efforts, the performance of existing lead-free dielectric ceramics is barely satisfactory. In this work, a novel lead-free 0.78NaNbO(3)-0.22Bi(Mg2/3Ta1/3)O-3 (0.22BMT) linear-like relaxor ferroelectric with ultrahigh energy storage capability and ultrahigh efficiency was designed and synthesized via a local random field strategy. To our satisfaction, an ultrahigh recoverable energy density (W-rec, 5.01 J cm(-3)) and an ultrahigh energy efficiency (eta) of 86.1% were achieved simultaneously, which are superior to those of other reported lead-free systems. In addition, excellent temperature, frequency and fatigue stabilities (variation of W-rec < 8% over 20-200 degrees C, W-rec < 3% after 1-100 Hz and 10(4) cycles) were observed. More importantly, the 0.22BMT ceramic exhibited a large current density (C-D similar to 537.9 A cm(-2)), an extremely high power density (P-D similar to 37.7 MW cm(-3)), and an ultrafast discharge time (t(0.9) similar to 23 ns). The impedance analysis demonstrated that the introduction of BMT was beneficial for the improvement of the insulation ability and breakdown strength (E-b) of the 0.22BMT ceramic. Additionally, nonisovalent Mg2+ and Ta5+-filled Nb5+ on the B-site with low average electronegativity generated a random local field, which enhanced the ion bonding, destroyed the long-range order and led to decreased remnant polarization (P-r). These results indicate that this new strategy is a feasible and efficacious means to simultaneously achieve ultrahigh W-rec, superior eta and excellent thermal stability in NN-based lead-free ceramics. Furthermore, this work has further broadened the scope of research and the application of the NN-based ceramics.
机译:迫切需要开发和使用高性能和环保储能电容。尽管采用广泛的研究努力,但现有无铅电介质陶瓷的性能几乎令人满意。在这项工作中,通过a设计和合成了一种新的无铅0.78nanbo(3)-0.22bi(mg2 / 3ta1 / 3)O-3(0.22bmt)线状放松的铁电。通过a当地随机场策略。为了我们满意,同时实现超高的可恢复能量密度(W-REC,5.01J厘米(-3))和超高能量效率(ETA),其优于其他报告的无铅系统。另外,优异的温度,频率和疲劳稳定性(W-REC的变化超过20-200℃,W-REC 3%在1-100Hz和10(4)次循环中)。更重要的是,0.22bmt陶瓷表现出大的电流密度(Cd类似于537.9 a cm(-2)),极高的功率密度(类似于37.7 mw cm(-3)的Pd)和超快放电时间(t (0.9)类似于23 ns)。阻抗分析表明,BMT的引入有利于改善0.22bmt陶瓷的绝缘能力和击穿强度(E-B)。另外,具有低平均电气导电性的B场上的非价Mg2 +和Ta5 +填充的Nb5 +产生随机局部场,其增强了离子键合,破坏了远程顺序并导致偏振(P-r)降低(p-r)。这些结果表明,这种新策略是一种可行和有效的手段,可在基于NN的无铅陶瓷中同时实现超高W-REC,优越的ETA和优异的热稳定性。此外,这项工作进一步扩大了基于NN陶瓷的研究范围和应用。

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    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

    Guilin Univ Technol Minist Educ Sch Mat Sci &

    Engn Key Lab Nonferrous Mat &

    New P Collaborat Innovat Ctr Explorat Hidden Nonferrous Guilin 541004 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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