Rezaie Maryam, Mohammadifar Maedeh, Choi Seokheun
Bioelectronics & Microsystems Laboratory, Department of Electrical & Computer Engineering, State University of New York at Binghamton, Binghamton, NY, 13902, USA.
Center for Research in Advanced Sensing Technologies & Environmental Sustainability, State University of New York at Binghamton, Binghamton, NY, 13902, USA.
Small. 2025 May;21(19):e2502633. doi: 10.1002/smll.202502633. Epub 2025 Mar 26.
For decades, science fiction has imagined electronic devices that spring to life on demand, function as programmed, and then vanish without a trace. Today, transient and bioresorbable electronics are making that vision a reality, sparking revolutionary progress in biomedicine, environmental stewardship, and hardware security. Yet one critical barrier remains: a fully transient power source with the same disappearing act. Microbial-based biobatteries have emerged as strong contenders, harnessing the power of microorganisms-found virtually everywhere-as natural biocatalysts. However, toxicity and health risks have limited these systems to single-use, often incinerable applications. Here, a transformative approach: a transient biobattery powered by commercially available probiotics that dissolves harmlessly is introduced, releasing only beneficial microbes. Fabricated on water-soluble or pH-responsive substrates, this biobattery capitalizes on a 15-strain probiotic blend to generate electricity across diverse electrode materials. By manipulating device length or encapsulating it with pH-sensitive polymers, power delivery can be fine-tuned from 4 min up to over 100 min. A single module outputs 4 µW of power, 47 µA of current, and an open-circuit voltage of 0.65 V. This groundbreaking design ushers in a new era of safe, effective transient bioenergy systems, opening unprecedented opportunities in biomedical implants, environmental sensors, and disposable electronics.
几十年来,科幻作品一直在设想这样的电子设备:能按需激活,按程序运行,然后消失得无影无踪。如今,瞬态和生物可吸收电子设备正在让这一设想成为现实,在生物医学、环境管理和硬件安全领域引发了革命性进展。然而,一个关键障碍仍然存在:需要一个能同样实现消失功能的完全瞬态电源。基于微生物的生物电池已成为有力的竞争者,利用几乎无处不在的微生物的力量作为天然生物催化剂。然而,毒性和健康风险限制了这些系统只能用于一次性、通常可焚烧的应用。在此,介绍一种变革性方法:一种由市售益生菌供电、能无害溶解且只释放有益微生物的瞬态生物电池。这种生物电池在水溶性或pH响应性基板上制造,利用15种益生菌的混合菌株在多种电极材料上发电。通过调整设备长度或用pH敏感聚合物包裹,供电时间可从4分钟精确调整到100多分钟。单个模块输出4微瓦的功率、47微安的电流和0.65伏的开路电压。这种开创性的设计开创了安全、有效的瞬态生物能源系统的新时代,为生物医学植入物、环境传感器和一次性电子产品带来了前所未有的机遇。