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Non-covalent modification of reduced graphene oxide by a chiral liquid crystalline surfactant

机译:非共价修饰的石墨烯手性液晶表面活性剂氧化

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摘要

In order to effectively disperse reduced graphene oxide (RGO) in functional materials and take full advantage of its exceptional physical and chemical properties, a novel and effective approach for non-covalent modification of RGO by a chiral liquid crystalline surfactant (CLCS) consisting of chiral mesogenic units, nematic mesogenic units with carboxyl groups and non-mesogenic units with a polycyclic conjugated structure is firstly established. The polycyclic conjugated structure can anchor onto the RGO surface via pi-pi interactions, the chiral mesogenic units possess affinity for chiral materials by joining the helical matrix of chiral material and the carboxyl groups in nematic mesogenic units are supposed to form coordination bonds with nano zinc oxide (ZnO) to fabricate functional nano hybrids. The transmittances of CLCS-RGO hybrids exhibit S-shaped nonlinear increase with the increase of wavelength, but the total transmittances from 220 nm to 800 nm show a linear decreasing trend with the increase of RGO content in the CLCS-RGO hybrid. Due to the superior thermal properties of RGO and the interactions between RGO and CLCS, the dispersed RGO can improve the glass transition and increase the thermal stability and decomposition activation energy of CLCS. The intercalation of RGO can decrease the thermochromism temperature and improve the pitch uniformity of CLCS. Furthermore, CLCS can promote the dispersion of RGO in chiral nematic liquid crystals (CNLCs), and the CNLC-RGO-CLCS hybrids present decreased driving voltage and accelerated electro-optical response. The CLCS non-covalently modified RGO can strengthen the photocatalytic degradation of ZnO by suppressing the aggregation of ZnO and RGO.
机译:为了有效地分散降低了石墨烯氧化(RGO)在功能材料和充分利用其优异的物理和化学性质,一种新颖的和有效的RGO非共价改性的方法一个手性液晶表面活性剂(clc)手性大分子组成的单位,向列大分子与羧基组和单位多环共轭non-mesogenic单位首先建立了结构。共轭结构可以锚定到RGO表面介子交互,通过手性的为手性大分子单位具有亲和力通过加入手性螺旋矩阵的材料在向列材料和羧基组大分子单位应该形成协调债券与纳米氧化锌(氧化锌)制造功能性纳米混合动力车。CLCS-RGO混合动力车呈现出s型非线性增加随着波长的增加,但是总透光率从220纳米到800纳米显示随着RGO的增加线性递减趋势CLCS-RGO混合内容。RGO和优良的热性能RGO和clc之间的相互作用,分散RGO可以提高玻璃化转变和提高热稳定性和分解clc的活化能。RGO可以减少thermochromism温度和改善clc的螺距均匀性。此外,clc可以促进分散手性向列液晶RGO (CNLCs),而CNLC-RGO-CLCS混合动力车现在降低了驱动电压和加速光电响应。可以增强光催化降解的氧化锌氧化锌和通过抑制聚合

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