1、

The improvement in cycling performance is attributed to the stabilization in the spinel structure by the doped metal cations.

循环性能的提高归于掺杂的金属阳离子使尖晶石结构趋于更稳定。

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2、

The result showed that the nano-sized ZnFe_2O_4 crystallines with spinel structure could be prepared at mild conditions.

结果表明,在温和的条件下可以成功的制备出ZnFe2O4纳米晶,其晶型为正尖晶石型结构。

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3、

The results show that all the samples formed pure spinel structure.

结果显示,样品均具有单一尖晶石结构。

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4、

The Development of Spinel Structure Functional Materials

尖晶石结构功能材料的新进展

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5、

Chloride molten salt is useful to prepare spinel structure material.

氯化物可优先选为制备尖晶石结构材料所用熔盐。

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6、

Study on Soft Chemist Preparation of Spinel Structure Cobalt Blue Pigment

软化学法制备尖晶石结构的钴蓝颜料的研究

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7、

The results indicate that all samples are single-phase compounds with spinel structure.

结果表明:样品均为单相的尖晶石结构。

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8、

Study of the Preparation of Ferrite with Spinel Structure and Decomposition CO_2 to C

尖晶石结构铁氧体的制备及其分解CO2的研究

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9、

The improvement in cycling performance is attributed to the stabilization in the spinel structure.

循环性能的改善主要是因为掺杂后结构更稳定。

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10、

The LiMn_2O_4 powder synthesized under the optimal conditions has a spinel structure and good morphology.

该工艺合成的LiMn2O4粉体具有尖晶石结构和良好的形貌。

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11、

Effect of lithium and cobalt doping on the Li-Mn spinel structure and performance

锂和钴元素掺杂对锂锰尖晶石结构和性能的影响

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12、

Mg-Al spinel structure changes from cubic to tetragonal, and the unit cell parameters also have great changes.

镁铝尖晶石结构与晶胞参数变化较大,由单晶的立方结构转变为四方结构。

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13、

Effects of Al Doping on the Spinel Structure of Li_2O_4

Al掺杂对尖晶石型Li[Mn(Al)]2O4结构的影响

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14、

Photocatalyst of spinel structure has been attracted extensive attention because of its short band gap and high photocatalytic activity.

尖晶石构型光催化剂以其禁带宽度较窄、有较高催化活性等特点引起了人们的广泛关注。

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15、

Because of the cation distribution is contrary to the normal spinel structure, this structure is called the inverse spinel structure.

这种结构使其阳离子分布与普通尖晶石结构相反,故被称为反尖晶石结构。

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16、

Results of TG and DTA show that LiMn_2O_4 can be formed after 400 ℃, followed by spinel structure transform.

热重和差热分析表明:前驱体于400℃开始形成LiMn2O4,并向尖晶石型结构转变。

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17、

The reasons of the structure instability, easy transforming into a spinel structure of layered LiMnO_2 were explained.

解释了层状LiMnO2结构不稳定、易向尖晶石结构转变的原因。

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18、

The result showed that both of the sulfur resistance and sulfur transfer abilities were improved by the spinel structure formation in the modified matrix.

结果表明,由于改性载体中所形成的类尖晶石结构使得催化剂具有较好的抗硫性能和一定的硫转移能力。

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19、
20、

This paper shows the importance of ability of iron to occur on both the tetrahedral and octahedral sites of the spinel structure.

表明铁离子出现在尖晶石结构中四面体间隙位和八面体间隙位的能力是极为重要的。

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