首页> 外文OA文献 >The effect of processing conditions on varistors prepared from nanocrystalline ZnOElectronic supplementary information (ESI) available: 1) EDX associated with HRTEM of the nano-ZnO sample before and after coating with Sb, Bi and Co; 2) HRTEM and EDX associated with HRTEM of the varistor powder calcined at 300 �C after the addition of all the dopants and 3) EDX associated with FESEM of the core shell varistor sample sintered at 1050 �C. See http://www.rsc.org/suppdata/jm/b3/b306280e/
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The effect of processing conditions on varistors prepared from nanocrystalline ZnOElectronic supplementary information (ESI) available: 1) EDX associated with HRTEM of the nano-ZnO sample before and after coating with Sb, Bi and Co; 2) HRTEM and EDX associated with HRTEM of the varistor powder calcined at 300 �C after the addition of all the dopants and 3) EDX associated with FESEM of the core shell varistor sample sintered at 1050 �C. See http://www.rsc.org/suppdata/jm/b3/b306280e/

机译:加工条件对根据可用的纳米晶体ZnOE电子补充信息制备的压敏电阻的影响:1)与Sb,Bi和Co涂覆前后的纳米ZnO样品的HRTEM相关的EDX; 2)添加所有掺杂剂后,在300°C下煅烧的压敏电阻粉末的HRTEM和EDTEM与HRTEM相关; 3)在1050°C烧结的核壳压敏电阻样品的FESEM与EDX相关。参见http://www.rsc.org/suppdata/jm/b3/b306280e/

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摘要

Nanoparticles of ZnO were prepared by the reaction of ethanolic solutions of zinc acetate and oxalic acidfollowed by drying (80 uC) and calcination (500 uC). Subsequently varistor materials were fabricated from thisnanoparticular ZnO via two separate routes:- a) from a ‘‘core shell’’ material using metal salts as additives; b)by using a conventional solid state mixing of metal oxides. Sintering (1050 uC) and subsequent electrical studieswere carried out for each of these samples and they were compared with commercial varistor samples preparedunder similar conditions. ‘‘Core shell’’ type varistor material showed considerably higher breakdown voltage(Vc ~ 850 ¡ 30 V mm21) as compared to a sample prepared by mixing with metal oxides (Vc ~ 683 ¡30 V mm21) or commercial varistor discs (Vc ~ 507 ¡ 30 V mm21). The high breakdown voltage obtained isattributed to the formation of more varistor-active grain boundaries per unit area.
机译:通过乙酸锌和草酸的乙醇溶液反应,接着干燥(80uC)和煅烧(500uC),制备ZnO纳米颗粒。随后,通过两种不同的途径由这种纳米颗粒ZnO制成压敏电阻材料:-a)使用金属盐作为添加剂,由“核壳”材料制成; b)通过使用金属氧化物的常规固态混合。对这些样品中的每一个进行了烧结(1050 uC)和随后的电学研究,并将它们与在类似条件下制备的商业压敏电阻样品进行了比较。与通过与金属氧化物(Vc〜683¡30 V mm21)或商用压敏电阻片(Vc〜)混合制备的样品相比,“核壳”型压敏电阻材料显示出更高的击穿电压(Vc〜850¡30 V mm21)。 507¡30 V mm21)。所获得的高击穿电压归因于每单位面积上更多的变阻器活性晶界的形成。

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