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- W2070433349 abstract "Most previous fiber-shaped solar cells were based on photoelectrochemical systems involving liquid electrolytes, which had issues such as device encapsulation and stability. Here, we deposited classical semiconducting polymer-based bulk heterojunction layers onto stainless steel wires to form primary electrodes and adopted carbon nanotube thin films or densified yarns to replace conventional metal counter electrodes. The polymer-based fiber cells with nanotube film or yarn electrodes showed power conversion efficiencies in the range 1.4% to 2.3%, with stable performance upon rotation and large-angle bending and during long-time storage without further encapsulation. Our fiber solar cells consisting of a polymeric active layer sandwiched between steel and carbon electrodes have potential in the manufacturing of low-cost, liquid-free, and flexible fiber-based photovoltaics." @default.
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- W2070433349 date "2012-11-09" @default.
- W2070433349 modified "2023-09-23" @default.
- W2070433349 title "Solid-State, Polymer-Based Fiber Solar Cells with Carbon Nanotube Electrodes" @default.
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- W2070433349 doi "https://doi.org/10.1021/nn304638z" @default.
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