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首页> 外文期刊>ACS nano >Assembly of a Fluorescent Chiral Photonic Crystal Membrane and Its Sensitive Responses to Multiple Signals Induced by Small Molecules
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Assembly of a Fluorescent Chiral Photonic Crystal Membrane and Its Sensitive Responses to Multiple Signals Induced by Small Molecules

机译:荧光手性光子晶体膜的组装及其对小分子诱导的多个信号的敏感响应

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摘要

Chiral liquid crystal materials that are responsive to environmental stimuli are in demand. A chiral photonic crystal membrane based on cellulose nanocrystals (CNCs) was prepared by molecule assembly in the present work. A fluorescent molecule containing a cationic group, [N-(3-N-benzyl-N,N-dimethylpropyl ammonium chloride)-1,8-naphthalimide]hydrazine, was assembled on the surface of the CNCs. The new chiral photonic crystal membrane possesses supersensitive multi-responses to small molecules, such as water and formaldehyde molecules. The appearance, liquid crystal texture, fluorescence, and color of the chiral membrane have sensitive changes induced by small molecules. By increasing RH from 30 to 100%, the reflectance peak of the membrane red- shifted from 498 to 736 nm. In particular, the iridescent texture and fingerprint structure of the membrane could change markedly under trace amounts of formaldehyde, and the chiral membrane can form an extremely sensitive off-on fluorescence switch. The relationship between the fluorescence intensity and the trace concentration of formaldehyde satisfied the linear equation with the association coefficient of 0.9997. The changes in fluorescence and color are visible to the naked eye, and the membrane can quantitatively recognize trace formaldehyde at a molecular level in a humid environment. The mechanism by which the fluorescence switch operates was investigated using density functional theory at the B3LYP/6-31G(d) level. The membrane has potential for use in the fields of advanced functional materials and biomaterials.
机译:对环境刺激的手性液晶材料有所要求。通过本作作品中的分子组件制备基于纤维素纳米晶体(CNC)的手性光子晶体膜。含有阳离子基的荧光分子[N-(3-苄基-N,N-二甲基丙二铵)肼,在CNC的表面上组装。新的手性光子晶体膜对小分子具有超敏多响应,例如水和甲醛分子。手性膜的外观,液晶纹理,荧光和颜色具有由小分子诱导的敏感性变化。通过从30%增加到100%,膜的反射峰从498转移到736nm。特别地,膜的虹彩纹理和指纹结构可以在痕量的甲醛上显着变化,并且手性膜可以形成极敏的离子荧光开关。甲醛的荧光强度与痕量浓度之间的关系满足了与0.9997的关联系数的线性方程。荧光和颜色的变化是肉眼可见的,并且膜可以在潮湿环境中定量地识别痕量甲醛。在B3LYP / 6-31G(D)水平下使用密度官能理论研究了荧光开关操作的机制。该膜具有在先进的功能材料和生物材料领域使用的可能性。

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