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The Inhibition of 3H-2- Methyl-1,2,4- Triazepino"2,3-A" Benzimidazole-4"5h"-One "MTB" on Corrosion of Mild Steel in 1 M Hcl Solutions: Theatrical and Experimental Study

المصدر: مجلة جامعة البيضاء
الناشر: جامعة البيضاء
المؤلف الرئيسي: Al Maofari, A. (Author)
مؤلفين آخرين: Saber, A. (Co-Author) , Almaamar, K. (Co-Author) , Labjar, N. (Co-Author) , Essass, E. M. (Co-Author)
المجلد/العدد: مج5, ع4
محكمة: نعم
الدولة: اليمن
التاريخ الميلادي: 2023
الشهر: نوفمبر
الصفحات: 641 - 656
ISSN: 2709-9695
رقم MD: 1456285
نوع المحتوى: بحوث ومقالات
اللغة: الإنجليزية
قواعد المعلومات: EduSearch, HumanIndex
مواضيع:
كلمات المؤلف المفتاحية:
Surface Morphology | Thermal Study | Corrosion | Inhibitor | Polarization | Mild Steel | Isotherm | Benzimidazole | Quantum Chemical | DFT Calculation
رابط المحتوى:
صورة الغلاف QR قانون
حفظ في:
LEADER 02459nam a22002777a 4500
001 2201595
041 |a eng 
044 |b اليمن 
100 |9 745020  |a Al Maofari, A.  |e Author 
245 |a The Inhibition of 3H-2- Methyl-1,2,4- Triazepino"2,3-A" Benzimidazole-4"5h"-One "MTB" on Corrosion of Mild Steel in 1 M Hcl Solutions:  |b Theatrical and Experimental Study 
260 |b جامعة البيضاء  |c 2023  |g نوفمبر 
300 |a 641 - 656 
336 |a بحوث ومقالات  |b Article 
520 |b The inhibitive action of a new Benzimidazole derivation, 3H-2-Methyl-1,2,4-Triazepino [2,3-a] Benzimidazole-4 (5h)-one (MTB), for the corrosion of mild steel in one molar hydrochloric acid solution was investigated. Corrosion tests has been conducted using weight loss measurement electrochemical method and scanning electron microscopy associated with energy dispersion spectrometer (SEM/EDS). The results showed increasing inhibition efficiency with increasing the inhibitor concentration and reach to 98% at 1×10-2 M. The thermal studies indicated that the newly synthesized MTB inhibited the corrosion of mild steel by its adsorbing on the specimen surface via both physisorption and chemisorption mechanism. The adsorption process of MTB on the mild steel surface obeys Langmuir adsorption isotherm and act as mix-type inhibitor. The analysis of surface morphology confirmed the thermal results by showing the MTB molecules on the mild steel surface. Various DFT parameter like HOMO and LUMO energy, gab energy (Δ Ε), electronegativity χ,softness (σ) global hardness (η) were derived for MTB molecules and correlated with experimental results. 
653 |a الكيمياء التحليلية  |a الفولاذ الطري  |a حمض الهيدروكلوريك  |a المركبات الكيميائية 
692 |b Surface Morphology  |b Thermal Study  |b Corrosion  |b Inhibitor  |b Polarization  |b Mild Steel  |b Isotherm  |b Benzimidazole  |b Quantum Chemical  |b DFT Calculation 
700 |9 771565  |a Saber, A.  |e Co-Author 
700 |9 771568  |a Almaamar, K.  |e Co-Author 
700 |9 771569  |a Labjar, N.  |e Co-Author 
700 |9 771575  |a Essass, E. M.  |e Co-Author 
773 |c 052  |e AlBayda University Journal  |f Mağallaẗ ğāmiʿaẗ al-Bayḍāʾ li-l-buḥūṯ  |l 004  |m مج5, ع4  |o 2422  |s مجلة جامعة البيضاء  |v 005  |x 2709-9695 
856 |u 2422-005-004-052.pdf 
930 |d y  |p y  |q n 
995 |a EduSearch 
995 |a HumanIndex 
999 |c 1456285  |d 1456285