Stoica Catalina, Idriss Hisham, Lian Justin Z, Malaval Julie-Lisa, Patrascu Anca-Maria, Banciu Alina Roxana, 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 Sep 17;18(18):4349. doi: 10.3390/ma18184349.
Electronic waste is becoming a growing global pollution issue due to short device lifespans and insufficient safe disposal methods. Hazardous metals like arsenic and mercury from electronic waste harm both the environment and human health. Recycling processes remain underdeveloped, requiring new eco-friendly solutions. This paper reports on the synthesis and properties of the cationic surfactants ammonium terthiophene () and 3,4-propylene-dioxythiophene (), which may have potential use in organic electronics. Ecotoxicological tests showed no significant long-term toxicity and medium-to-high biodegradability, which are keys for environmental protection. These surfactants also displayed selective bacterial adhesion, making them candidates for bionic devices. Life cycle assessment revealed higher energy use and ecotoxicity for than , underscoring the need for sustainable chemical design.
由于设备使用寿命短和安全处置方法不足,电子垃圾正成为一个日益严重的全球污染问题。电子垃圾中的砷和汞等有害金属会损害环境和人类健康。回收工艺仍不发达,需要新的环保解决方案。本文报道了阳离子表面活性剂三噻吩铵()和3,4-亚丙基二氧噻吩()的合成及性能,它们可能在有机电子学中有潜在用途。生态毒理学测试表明,它们没有显著的长期毒性,且具有中到高的生物降解性,这是环境保护的关键。这些表面活性剂还表现出选择性细菌粘附,使其成为仿生设备的候选材料。生命周期评估显示,相比于,的能源消耗和生态毒性更高,这突出了可持续化学设计的必要性。