Stoica Catalina, Banciu Alina Roxana, Idriss Hisham, Lian Justin Z, Patrascu Anca-Maria, Cucurachi Stefano, Richeter Sébastien, Clément Sébastien, Nita-Lazar Mihai
National Research and Development Institute for Industrial Ecology-ECOIND, 57-73 Drumul Podu Dambovitei, District 6, 060652 Bucharest, Romania.
Institut Charles Gerhardt Montpellier (ICGM), University of Montpellier, Centre National de la Recherche Scientifique (CNRS) École Nationale Supérieure de Chimie de Montpellier (ENSCM), Balard Recherche, Pôle Chimie, ICGM UMR 5253, 1919 Rte de Mende, 34293 Montpellier Cedex 5, France.
Materials (Basel). 2025 Jun 8;18(12):2701. doi: 10.3390/ma18122701.
Continuous human population growth, industrialization, and technical progress have increased the demand for a new design and synthesis of chemical compounds. Developing eco-friendly chemical compounds has been a priority for fostering a sustainable and healthy environment, which is directly linked to human well-being. In this context, green chemistry and circular economy principles have been applied to generate valuable new chemicals, such as surfactants, with high market value. Surfactants play a crucial role in various products for both domestic and industrial applications, leading to their large-scale production a diverse array of chemical structures. However, the advantages of their use must be balanced against their negative environmental impact as pollutants. Thus, there is an increasing demand for the development of new eco-friendly surfactants. Additionally, life cycle assessment (LCA) studies of new surfactants are essential for evaluating their environmental impact, enhancing energy efficiency and facilitating the transition toward sustainable energy resources. In this work, we present the chemical synthesis of oligomeric and polymeric thiophene-based surfactants with potential applications in biosensors, organic transistors, and various other fields. The newly synthesized oligomeric and polymeric thiophene-based surfactants demonstrated medium-to-high biodegradation potential and showed no significant ecotoxicological effects on bacterial communities. However, the LCA of their synthesis revealed a negative impact on the environment and human health, particularly concerning polymeric thiophene-based surfactants. The LCA identified specific chemical steps that could be optimized to develop a new generation of eco-friendly surfactants.
持续的人口增长、工业化和技术进步增加了对新的化合物设计与合成的需求。开发环境友好型化合物一直是促进可持续健康环境的首要任务,而这与人类福祉直接相关。在此背景下,绿色化学和循环经济原则已被应用于生产具有高市场价值的新型有价值化学品,如表面活性剂。表面活性剂在各种家用和工业应用产品中发挥着关键作用,这导致了它们具有大规模生产和多样的化学结构。然而,其使用的优点必须与其作为污染物对环境的负面影响相权衡。因此,对新型环境友好型表面活性剂的开发需求日益增加。此外,对新型表面活性剂进行生命周期评估(LCA)研究对于评估其环境影响、提高能源效率以及促进向可持续能源资源的转变至关重要。在这项工作中,我们展示了基于噻吩的低聚物和聚合物表面活性剂的化学合成,这些表面活性剂在生物传感器、有机晶体管及其他各种领域具有潜在应用。新合成的基于噻吩的低聚物和聚合物表面活性剂显示出中到高的生物降解潜力,并且对细菌群落没有显著的生态毒理学影响。然而,其合成的生命周期评估显示对环境和人类健康有负面影响,特别是对于基于噻吩的聚合物表面活性剂。生命周期评估确定了可以优化的特定化学步骤,以开发新一代环境友好型表面活性剂。