Department of Materials Science & State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai, 200438, P. R. China.
College of Biological Science and Medical Engineering, Donghua University, Shanghai, 201620, P. R. China.
Adv Sci (Weinh). 2024 Jun;11(23):e2310189. doi: 10.1002/advs.202310189. Epub 2024 Mar 11.
Metal organic framework (MOF) films have attracted abundant attention due to their unique characters compared with MOF particles. But the high-temperature reaction and solvent corrosion limit the preparation of MOF films on fragile substrates, hindering further applications. Fabricating macro-sized continuous free-standing MOF films and transferring them onto fragile substrates are a promising alternative but still challenging. Here, a universal strategy to prepare transferrable macro-sized continuous free-standing MOF films with the assistance of oxide nanomembranes prepared by atomic layer deposition and studied the growth mechanism is developed. The oxide nanomembranes serve not only as reactant, but also as interfacial layer to maintain the integrality of the free-standing structure as the stacked MOF particles are supported by the oxide nanomembrane. The centimeter-scale free-standing MOF films can be transferred onto fragile substrates, and all in one device for glucose sensing is assembled. Due to the strong adsorption toward glucose molecules, the obtained devices exhibit outstanding performance in terms of high sensitivity, low limit of detection, and long durability. This work opens a new window toward the preparation of MOF films and MOF film-based biosensor chip for advantageous applications in post-Moore law period.
金属有机骨架(MOF)薄膜由于具有独特的性质,与 MOF 颗粒相比吸引了大量的关注。但是高温反应和溶剂腐蚀限制了 MOF 薄膜在脆弱基底上的制备,阻碍了进一步的应用。制备宏观尺寸连续的自由支撑 MOF 薄膜并将其转移到脆弱基底上是一种很有前途的替代方法,但仍然具有挑战性。在这里,我们开发了一种通用策略,通过原子层沉积制备的氧化物纳米膜的辅助作用来制备可转移的宏观尺寸连续的自由支撑 MOF 薄膜,并研究了其生长机制。氧化物纳米膜不仅作为反应物,而且作为界面层,以保持自由支撑结构的完整性,因为堆叠的 MOF 颗粒由氧化物纳米膜支撑。厘米级的自由支撑 MOF 薄膜可以转移到脆弱的基底上,并组装成一个用于葡萄糖传感的整体设备。由于对葡萄糖分子具有很强的吸附能力,所得到的器件在灵敏度、低检测限和长耐久性方面表现出优异的性能。这项工作为 MOF 薄膜的制备以及基于 MOF 薄膜的生物传感器芯片开辟了一个新的窗口,有利于在后摩尔定律时代的应用。