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Antibacterial Narrow-Band-Gap Conjugated Oligoelectrolytes with High Photothermal Conversion Efficiency

机译:具有高光热转换效率的抗菌窄带间隙共轭寡核电解质

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摘要

Two conjugated oligoelectrolytes (COEs), WMG1 and WMG2, were designed with the goal of achieving near infrared absorption and high photothermal conversion efficiency. Specifically, electron-rich thiophene and electron-poor benzo[1,2-c:4,5-c]bis[1,2,5]thiadiazole subunits were introduced into the conjugated core to modulate the optical gap and to reduce the fluorescence emission efficiency. WMG1 and WMG2 show absorption maxima at around 800nm, which favors tissue penetration. Although relatively small in size, WMG1 and WMG2 exhibit photothermal conversion efficiencies of circa 60% and 54%, respectively. WMG1 shows dark toxicity to the Gram positive bacterium B. subtilis and good photothermal killing efficiency toward both B. subtilis and Gram negative E. coli, features that demonstrate the promising potential of the COE molecular design for photothermal applications.
机译:设计了两种共轭的寡核电解质(COES),WMG1和WMG2,以实现近红外吸收和高光热转化效率的目的而设计。 具体地,将富含电子的噻吩和电子贫苯并[1,2-C:4,5-C] BIS [1,2,5]将噻二唑亚基引入共轭芯中以调节光学间隙并减少荧光 发射效率。 WMG1和WMG2显示出约800nm的吸收式最大值,其利用组织渗透。 虽然尺寸相对较小,但WMG1和WMG2分别表现出大约60%和54%的光热转化效率。 WMG1显示了革氏菌阳性细菌B.枯草芽孢杆菌和良好的光热杀伤效率朝向B.枯草芽孢杆菌和革兰氏阴性大肠杆菌的良好的光热杀伤效率。

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