Javascript must be enabled to continue!
Preparation of Highly Reactive Electrogenerated Zinc
View through CrossRef
Logam zink berkereaktifan tinggi yang dihasilkan secara elektrolisis (EGZn/Naph) disediakan dengan mudah dalam larutan N,N–dimetilformamida (DMF) yang mengandungi naftalena dan elektrolit penyokong di dalam sebuah sel yang telah dipasang siap dengan katod platinum dan anod zink. EGZn/Naph ini adalah agregat zarah sangat halus yang lebih kecil berbanding logam zink komersial ataupun zink yang dihasilkan secara elektrolisis biasa (EGZn). Kereaktifan zink berkereaktifan tinggi ini dibuktikan dengan transformasi bromoalkana kepada organozink bromida yang berkesan, yang tidak boleh dicapai dengan menggunakan zink biasa mahupun logam EGZn. Reaksi ganding silang organozink bromida ini dengan iodobenzena mudah berlaku dalam kehadiran mangkin paladium untuk menghasilkan produk terganding silang, etil 4–fenilbutanoata sebanyak 96%.
Kata kunci: Elektrolisis, reaktif zink, naftalena, bromoalkana, organozink kompoun
Highly reactive electrogenerated zinc metal (EGZn/Naph) was readily prepared by the electrolysis of an N,N–dimethylformamide (DMF) solution containing naphthalene and a supporting electrolyte in a one–compartment cell fitted with a platinum cathode and a zinc anode. This EGZn/Naph is an aggregation of very fine particles which are much smaller in size than commercial zinc metal or the usual electrogenerated zinc (EGZn). The reactivity of this highly reactive zinc was elucidated by the efficient transformation of bromoalkane into the corresponding organozinc bromide, which cannot be achieved by the use of both usual zinc or EGZn metals. Subsequent cross–coupling reaction of the organozinc bromide with iodobenzene readily took place in the presence of a palladium catalyst to give the corresponding cross–coupled product, ethyl 4–phenylbutanoate in 96% yield.
Key words: Electrolysis, reactive zinc, naphthalene, bromoalkanes, organozinc compound.
Title: Preparation of Highly Reactive Electrogenerated Zinc
Description:
Logam zink berkereaktifan tinggi yang dihasilkan secara elektrolisis (EGZn/Naph) disediakan dengan mudah dalam larutan N,N–dimetilformamida (DMF) yang mengandungi naftalena dan elektrolit penyokong di dalam sebuah sel yang telah dipasang siap dengan katod platinum dan anod zink.
EGZn/Naph ini adalah agregat zarah sangat halus yang lebih kecil berbanding logam zink komersial ataupun zink yang dihasilkan secara elektrolisis biasa (EGZn).
Kereaktifan zink berkereaktifan tinggi ini dibuktikan dengan transformasi bromoalkana kepada organozink bromida yang berkesan, yang tidak boleh dicapai dengan menggunakan zink biasa mahupun logam EGZn.
Reaksi ganding silang organozink bromida ini dengan iodobenzena mudah berlaku dalam kehadiran mangkin paladium untuk menghasilkan produk terganding silang, etil 4–fenilbutanoata sebanyak 96%.
Kata kunci: Elektrolisis, reaktif zink, naftalena, bromoalkana, organozink kompoun
Highly reactive electrogenerated zinc metal (EGZn/Naph) was readily prepared by the electrolysis of an N,N–dimethylformamide (DMF) solution containing naphthalene and a supporting electrolyte in a one–compartment cell fitted with a platinum cathode and a zinc anode.
This EGZn/Naph is an aggregation of very fine particles which are much smaller in size than commercial zinc metal or the usual electrogenerated zinc (EGZn).
The reactivity of this highly reactive zinc was elucidated by the efficient transformation of bromoalkane into the corresponding organozinc bromide, which cannot be achieved by the use of both usual zinc or EGZn metals.
Subsequent cross–coupling reaction of the organozinc bromide with iodobenzene readily took place in the presence of a palladium catalyst to give the corresponding cross–coupled product, ethyl 4–phenylbutanoate in 96% yield.
Key words: Electrolysis, reactive zinc, naphthalene, bromoalkanes, organozinc compound.
Related Results
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
A New Method for Calculating Zinc Content and Determining Appropriate Zinc Levels in Foods
Calculating the zinc content per 100 kcal, 100 g or 100 mL, or the reference amount customarily consumed (RACC) of food shows the zinc content of some foods inappropriately. So, ma...
Biodisponibilidad del zinc
Biodisponibilidad del zinc
La deficiencia marginal de zinc (déficit sub-clínico de zinc) ha sido reconocida como una condición muy prevalente en diferentes regiones del mundo. La absorción intestinal de zinc...
3rd international Biometals webinars
3rd international Biometals webinars
Introduction to the 3rd Biometals webinars and tribute to Pierre CornelisWelcome to the 3rd international webinars series. For those who don't already know, these webinars have bee...
Improved Swallowing Function after Zinc Supplementation in the Elderly
Improved Swallowing Function after Zinc Supplementation in the Elderly
Abstract
Background: Zinc is an essential micronutrient for maintaining biological activity. The level of zinc in the blood is known to decrease with age, especially in tho...
Maternal Zinc Intakes and Homeostatic Adjustments during Pregnancy and Lactation
Maternal Zinc Intakes and Homeostatic Adjustments during Pregnancy and Lactation
Zinc plays critical roles during embryogenesis, fetal growth, and milk secretion, which increase the zinc need for pregnancy and lactation. Increased needs can be met by increasing...
SERUM ZINC CONCENTRATION OF CORD BLOOD IN TERM NEONATES AT OF HUE UNIVERSITY OF MEDICINE AND PHARMACY HOSPITAL
SERUM ZINC CONCENTRATION OF CORD BLOOD IN TERM NEONATES AT OF HUE UNIVERSITY OF MEDICINE AND PHARMACY HOSPITAL
Background: Zinc is one of the important trace elements involved in many biological functions of the body. Newborns are susceptible to zinc deficiency. Zinc deficiency in the mothe...
Zinc Transport: Regulation
Zinc Transport: Regulation
AbstractZinc homeostasis in cells is tightly controlled within narrow boundaries through the highly integrated processes of zinc uptake, sequestration, and efflux across the cell m...
Effect of sulphur and zinc fertilization on yield, uptake and nutrient-use efficiency of sesame (Sesamum indicum) || PINKY YADAV1, S.S. YADAV2, KAMAL GARG3, L.R. YADAV4, S.K. YADAV5 AND RAM KRISHNA SHEKHAWAT6 ||A field experiment was conducted at Agronomy
Effect of sulphur and zinc fertilization on yield, uptake and nutrient-use efficiency of sesame (Sesamum indicum) || PINKY YADAV1, S.S. YADAV2, KAMAL GARG3, L.R. YADAV4, S.K. YADAV5 AND RAM KRISHNA SHEKHAWAT6 ||A field experiment was conducted at Agronomy
A field experiment was conducted at Agronomy Farm, S.K.N. College of Agriculture Jobner, Jaipur (Rajasthan) during the rainy (kharif) season of 2018, to study the effect of 4 level...

