2012 ©
             EN, publication_detail
EN, publication_article
EN, publication_conference_work_name calculation of the electron affinity properties of pristine and functionalized adamantane molecules using time-dependent density functional theory 
EN, publication_conference_publish_date 17 July 2013 
EN, publication_conference_conference
     EN, publication_conference_conference_name The 12th Asia Pacific Physics Conference 
     EN, publication_conference_conference_institute The Association of Asia Pacific Physical Societies (AAPPS) 
     EN, publication_conference_conference_place International Conference hall 
     EN, publication_conference_conference_province Makuhari Messe, Chiba, Japan 
     EN, publication_conference_conference_from_date 14 July 2013 
     EN, publication_conference_conference_to_date 19 July 2013 
EN, publication_conference_proceeding
     EN, publication_conference_proceeding_volume_short 2013 
     EN, publication_conference_proceeding_issue_short E1-2-03 
     EN, publication_conference_proceeding_page_short 103 
     EN, publication_conference_proceeding_editor_short  
     EN, publication_conference_abstract The electron affinity (EA) and electronic structure of the pristine and the functionalized adamantane molecules were determined using the timedependent density functional theory (TD-DFT) method within local density approximation (LDA). Tertiary hydrogen atoms of the pristine adamantane were replaced with lithium (Li) and sodium (Na) atoms to form the C10H16-NXN structure. We found that the pristine adamantine has a large band gap and show negative electro n affinity behavior. In contrast with all functionalized adamantane, it found that Li and Na incorporated in the adamantane structure result their narrower band gap ranging from 0.08 to 1.34 eV. This result suggests the potential applications in optoelectronics in the infrared radiation region which is included the positive electron affinity behavior. The negative electron affinity of the pristine adamantane molecule makes it possible to produce electron emission devices. 
EN, publication_article_writer
545020228-2 Mr. NIKORN SINSUPHAN [EN, publication_article_main_writer]
Science Master's Degree

EN, publication_conference_evaluation มีผู้ประเมินอิสระ 
EN, publication_conference_level นานาชาติ 
EN, publication_conference_proceeding_style Abstract 
EN, publication_conference_presentation_style Oral 
EN, publication_conference_part_of_thesis EN, publication_conference_part_of_thesis_true 
EN, publication_conference_part_of_graduate EN, publication_conference_part_of_graduate_false 
EN, publication_conference_is_reward EN, publication_conference_is_reward_false 
EN, publication_attachment_file
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