Computational investigation of the influence of carbon nanostructures on the properties of energetic TATB substance by DFT method

Message:
Article Type:
Research/Original Article (بدون رتبه معتبر)
Abstract:
In this study, computational synthesis of carbon nanostructure's derivatives with TATB or 2,4,6-triamino-1,3,5- trinitrobenzene , which is an energetic substance in the temperature range of 300-400 K were evaluated by density functional theory method. In this regard, at the outset, the substances in the both sides of intended reactions for forming the desired products were optimized geometrically; afterward pertinent calculations to thermodynamic parameters were implemented on all of them. Then, the values of Enthalpy changes (ΔHf) and Gibbs free energy changes (ΔGf) of this reaction were calculated in various temperatures (300-400 K) by minusing the sum of these parameters in the products from reactants. Also Finally, The energy gaps between the HOMO and LUMO of the studied compounds were also explored. The computations results for every one of nanostructures have been compared with each other and their effect on the chemical attributes of TATB highly energetic material were inspected.
Language:
English
Published:
International Journal Of Bio-Inorganic Hybrid Nanomaterials, Volume:6 Issue: 4, Winter 2017
Pages:
239 to 244
magiran.com/p1828387  
دانلود و مطالعه متن این مقاله با یکی از روشهای زیر امکان پذیر است:
اشتراک شخصی
با عضویت و پرداخت آنلاین حق اشتراک یک‌ساله به مبلغ 1,390,000ريال می‌توانید 70 عنوان مطلب دانلود کنید!
اشتراک سازمانی
به کتابخانه دانشگاه یا محل کار خود پیشنهاد کنید تا اشتراک سازمانی این پایگاه را برای دسترسی نامحدود همه کاربران به متن مطالب تهیه نمایند!
توجه!
  • حق عضویت دریافتی صرف حمایت از نشریات عضو و نگهداری، تکمیل و توسعه مگیران می‌شود.
  • پرداخت حق اشتراک و دانلود مقالات اجازه بازنشر آن در سایر رسانه‌های چاپی و دیجیتال را به کاربر نمی‌دهد.
In order to view content subscription is required

Personal subscription
Subscribe magiran.com for 70 € euros via PayPal and download 70 articles during a year.
Organization subscription
Please contact us to subscribe your university or library for unlimited access!