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Simple synthesis of MoO2/carbon aerogel anodes for high performance lithium ion batteries from seaweed biomass

机译:来自海藻生物质的高性能锂离子电池的MOO2 /碳气体阳极的简单合成

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The sluggish kinetics and large volume expansion occurring during cycle process are critical disadvantages for molybdenum dioxide (MoO _(2) ) based anode materials for lithium-ion batteries (LIBs). The design and controllable synthesis of MoO _(2) based materials with unique hierarchical structure are desired. In this work, we present a one step in situ method to synthesize MoO _(2) /carbon aerogel composites with MoO _(2) nanoparticles embedded in the carbon aerogel matrix using an environmentally friendly alginate as the carbon precursor. The key feature of our strategy involves the use of a carbon aerogel matrix which facilitates the Li ion transport and offers the space for MoO _(2) volume expansion during the discharge and charge processes. The composite prepared under optimum conditions, namely a stabilization temperature at 375 °C, exhibited a brilliant performance with a specific capacity of 574 mA h g ~(?1) at a current density of 100 mA g ~(?1) , good cycle stability ( i.e. , a reversible capacity of 490 mA h g ~(?1) at a current density of 200 mA g ~(?1) for 120 cycles), excellent rate capability (remains at 331 mA h g ~(?1) even at a current density of 1000 mA g ~(?1) ). This finding presents an easy, eco-friendly and efficient strategy for the fabrication of potential high-performance LIBs anodes.
机译:在循环过程中发生的缓慢动力学和大容量膨胀是二氧化钼(MOO _(2))基于锂离子电池(LIBS)的阳极材料的关键缺点。期望具有独特分层结构的MOO _(2)基材料的设计和可控合成。在这项工作中,我们在使用环境友好的藻酸盐作为碳前体中,展示了用Moo _(2)/碳气体复合物合成MoO _(2)/碳气体复合材料,以使用环保藻酸盐作为碳前体。我们的策略的关键特征涉及使用碳气凝胶基质,这促进了锂离子运输,并在放电和充电过程中提供Moo _(2)体积膨胀的空间。在最佳条件下制备的复合材料,即375℃的稳定温度,在电流密度为100 mA g〜(α1),良好的循环稳定性,具有574mA Hg〜(α1)的特定能力。 (即,490 mA Hg〜(α1)的可逆容量,电流密度为200 mA g〜(α1),为120次循环,率优异的速率能力(仍保持在331 mA hg〜(?1)即使在a电流密度为1000 mA g〜(?1))。这一发现为潜在的高性能LIBS阳极制造了一种简单,环保和高效的策略。

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