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Flexible Multilevel Resistive Memory with Controlled Charge Trap Band N-Doped Carbon Nanotubes

  作者 Hwang, SK; Lee, JM; Kim, S; Park, JS; Park, HI; Ahn, CW; Lee, KJ; Lee, T; Kim, SO  
  选自 期刊  Nano Letters;  卷期  2012年12-5;  页码  2217-2221  
  关联知识点  
 

[摘要]B- and N-doped carbon nanotubes (CNTs) with controlled workfunctions were successfully employed as charge trap materials for solution processable, mechanically flexible, multilevel switching resistive memory. B- and N-doping systematically controlled the charge trap level and dispersibility of CNTs in polystyrene matrix. Consequently, doped CNT device demonstrated greatly enhanced nonvolatile memory performance (ON-OFF ratio >10(2), endurance cycle >10(2), retention time >10(5)) compared to undoped CNT device. More significantly, the device employing both B- and N-doped CNTs with different charge trap levels exhibited multilevel resistive switching with a discrete and stable intermediate state. Charge trapping materials with different energy levels offer a novel design scheme for solution processable multilevel memory.

 
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