Complementary Hybrid Semiconducting Superlattices with Multiple Channels and Mutual Stabilization

An organic–inorganic hybrid superlattice with near perfect synergistic integration of organic and inorganic constituents was developed to produce properties vastly superior to those of either moiety alone. The complementary hybrid superlattice is composed of multiple quantum wells of 4-mercaptopheno...

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Veröffentlicht in:Nano letters 2020-07, Vol.20 (7), p.4864-4871
Hauptverfasser: Kim, Jongchan, Huong, Chu Thi Thu, Long, Nguyen Van, Yoon, Minho, Kim, Min Jae, Jeong, Jae Kyeong, Choi, Sungju, Kim, Dae Hwan, Lee, Chi Ho, Lee, Sang Uck, Sung, Myung Mo
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container_end_page 4871
container_issue 7
container_start_page 4864
container_title Nano letters
container_volume 20
creator Kim, Jongchan
Huong, Chu Thi Thu
Long, Nguyen Van
Yoon, Minho
Kim, Min Jae
Jeong, Jae Kyeong
Choi, Sungju
Kim, Dae Hwan
Lee, Chi Ho
Lee, Sang Uck
Sung, Myung Mo
description An organic–inorganic hybrid superlattice with near perfect synergistic integration of organic and inorganic constituents was developed to produce properties vastly superior to those of either moiety alone. The complementary hybrid superlattice is composed of multiple quantum wells of 4-mercaptophenol organic monolayers and amorphous ZnO nanolayers. Within the superlattice, multichannel formation was demonstrated at the organic–inorganic interfaces to produce an excellent-performance field effect transistor exhibiting outstanding field-effect mobility with band-like transport and steep subthreshold swing. Furthermore, mutual stabilizations between organic monolayers and ZnO effectively reduced the performance degradation notorious in exclusively organic and ZnO transistors.
doi_str_mv 10.1021/acs.nanolett.0c00859
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title Complementary Hybrid Semiconducting Superlattices with Multiple Channels and Mutual Stabilization
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