Center for Cooperative Research in Biomaterials (CIC BiomaGUNE), Basque Research and Technology Alliance (BRTA), Donostia-San Sebastián, 20014, Spain.
Department of Chemical and Pharmaceutical Sciences, Universitá Degli Studi di Trieste, Trieste, 34127, Italy.
Small. 2023 Dec;19(51):e2300163. doi: 10.1002/smll.202300163. Epub 2023 May 5.
Hundreds of new electrochemical sensors are reported in literature every year. However, only a few of them makes it to the market. Manufacturability, or rather the lack of it, is the parameter that dictates if new sensing technologies will remain forever in the laboratory in which they are conceived. Inkjet printing is a low-cost and versatile technique that can facilitate the transfer of nanomaterial-based sensors to the market. Herein, an electroactive and self-assembling inkjet-printable ink based on protein-nanomaterial composites and exfoliated graphene is reported. The consensus tetratricopeptide proteins (CTPRs), used to formulate this ink, are engineered to template and coordinate electroactive metallic nanoclusters (NCs), and to self-assemble upon drying, forming stable films. The authors demonstrate that, by incorporating graphene in the ink formulation, it is possible to dramatically improve the electrocatalytic properties of the ink, obtaining an efficient hybrid material for hydrogen peroxide (H O ) detection. Using this bio-ink, the authors manufactured disposable and environmentally sustainable electrochemical paper-based analytical devices (ePADs) to detect H O , outperforming commercial screen-printed platforms. Furthermore, it is demonstrated that oxidoreductase enzymes can be included in the formulation, to fully inkjet-print enzymatic amperometric biosensors ready to use.
每年有数百种新型电化学传感器在文献中报道。然而,只有少数几种能够进入市场。可制造性,或者更确切地说是缺乏可制造性,是决定新的传感技术是否会永远停留在其诞生的实验室中的参数。喷墨打印是一种低成本、多功能的技术,可以促进基于纳米材料的传感器向市场的转移。本文报道了一种基于蛋白质-纳米材料复合材料和剥离石墨烯的电活性和自组装喷墨打印墨水。用于配制这种墨水的共识四肽蛋白(CTPRs)被设计为模板和配位电活性金属纳米簇(NCs),并在干燥时自组装,形成稳定的薄膜。作者证明,通过将石墨烯纳入墨水配方,可以显著提高墨水的电催化性能,获得用于过氧化氢(H2O2)检测的高效混合材料。使用这种生物墨水,作者制造了可一次性使用和环境可持续的电化学纸质分析器件(ePADs)来检测 H2O2,性能优于商业丝网印刷平台。此外,还证明可以将氧化还原酶包含在配方中,以完全喷墨打印可立即使用的酶安培生物传感器。