The presence of defects in carbon nanotubes strongly modifies their electrical, mechanical, and chemical properties. It was long thought undesirable, but recent experiments have shown that introduction of structural defects using ion or electron irradiation can lead to novel nanodevices. We demonstrate a method for detecting and quantifying point defect density in individual carbon nanotubes (CNTs) based on measuring the polarization dependence (linear dichroism) of the C 1s -> pi* transition at specific locations along individual CNTs with a scanning transmission X-ray microscope (STXM). We show that STXM can be used to probe defect density in individual CNTs with high spatial resolution. The quantitative relationship between ion dose, nanotube diameter, and defect density was explored by purposely irradiating selected sections of nanotubes with kiloelectronvolt (keV) Ga+ ions. Our results establish polarization-dependent X-ray microscopy as a new and very powerful characterization technique for carbon nanotubes and other anisotropic nanostructures.
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Kim, Hyun Suk
Duy, Dao Quang
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Duy, Dao Quang
Kim, Jae Hoon
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Kim, Jae Hoon
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Lee, Hyung Joo
Yoon, Dang Mo
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Yoon, Dang Mo
Shin, Seok Seung
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Shin, Seok Seung
Ha, Jung Woong
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Ha, Jung Woong
Lee, Kang Jea
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Lee, Kang Jea
Hwang, Yong Gyoo
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Hwang, Yong Gyoo
Lee, Choong Hun
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Wonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea
Lee, Choong Hun
Park, Chong-Yun
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Sungkyunkwan Univ, Ctr Nanotubes & Nanostruct Composites, Suwon 440746, South KoreaWonkwang Univ, Div Microelect & Display Technol, Reg Innovat Ctr, Next Generat Ind Radiat Technol, Iksan 570749, South Korea