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Магистратуры «Химия для энергетических технологий»

Научные проекты

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Аннотация

Магистратура ориентирована на химиков, химиков-технологов, инженеров�и биологов, которые хотят развиваться в области химии для энергетических технологий*.

Если вы стремитесь заниматься преобразованием энергии с использованием альтернативных источников, созданием новых материалов и разработкой передовых технологий для нефтегазовой промышленности, то эта программа идеально подойдет для вас.

Во время обучения вы сможете полностью погрузиться в научно-исследовательские проекты в области энергетики и практически с первого дня обучения работать над собственным проектом.

Если у вас есть идея продукта или технологии, то при поддержке наших партнеров вы сможете заниматься разработкой собственного проекта для промышленных предприятий.

*энергетические технологии здесь понимаются в широком смысле. В лаборатории разрабатываются новые материалы и технологии, которые могут быть использованы в энергетическом секторе экономики

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Содержание

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Проекты EnergyLab

EnergyLab — это передовая лаборатория прикладных материалов для энергетики на базе университета ИТМО. Мы занимаемся разработкой «умных» материалов, электрохимическим синтезом веществ с высокой добавленной стоимостью и переработкой отходов�в биотопливо для решения проблем энерго- и ресурсосбережения.

Наши ученые активно работают над проектами в трех направлениях:

• Catalysis

• Additive technologies

• Environmental Science

Лаборатория ставит своей целью увеличение эффективности энергетического сектора�и снижение негативного влияния на окружающую среду.

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Smart membrane for extracting lithium from associated waters�of oil and gas condensate fields

Название проекта

This project aims to create a smart membrane from natural and artificial polymers that can selectively extract lithium ions from brines for subsequent processing into Li2CO3, which is a valuable raw material for the production of batteries and accumulators. The result of the project will be the development of MVP and the pilot launch of the production technology, for the subsequent scaling of the technology and entering the market.

Описание проекта

Кураторы

Maria Dmitrieva

Ilia Doroshenko

Irina Filippova

m_dmitrieva@scamt-itmo.ru

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Photocatalytic carbon dot/chitosan hybrid for wastewater treatment

Название проекта

This project aims to create a carbon dot/chitosan nanocatalyst/sorbent for the photocatalytic degradation of organic dyes and the subsequent removal of their degradation products from aqueous environments

Описание проекта

Кураторы

Chantal Tracey

Blessing Aliyu

tracey@scamt-itmo.ru

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Development of a model to predict

optimal compositions and forms�for electrocatalysis of urea and�its derivatives

Название проекта

The use of artificial intelligence makes it possible to create specialised catalytic particles for specific technological tasks with minimum time and cost. The development of a model will allow predicting the composition and shape of the catalyst required for efficient oxidation of urea to form N2 and H2. The input is the chemical formula, the output is the activity of the material during the decomposition process and its shape. This technology can optimise production processes, reduce resource costs and improve environmental efficiency. The concrete result is presented as a digital platform with a model, database and visualisation

Описание проекта

Кураторы

Dmitrieva Anastasia

Fomkina Anna

dmitrieva@scamt-itmo.ru

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Nanostructured systems for water purification and heavy metals sorption

Название проекта

Clean water is the essential condition for high standards of living acquiring. Moreover, industrial needs in novel sorbents for selective metal ion capturing and hydrometallurgy still exists even with all current state-of-art. In this project, we are working with nanomaterial hybrids which may overthrown materials of previous generation by its cost, efficiency and ecological footprint. By using the final product, it is possible not only to clean, but also regenerate high-cost metals from water media

Описание проекта

Кураторы

Egor Ryabchenko

Arseniy Suslov

ryabchenko@scamt-itmo.ru

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High-entropy alloy nanoparticles produced by carbothermal shock�for application in CO2 conversion�and water splitting

Название проекта

The project aims to develop a model capable of predicting stable and electrocatalytically active compositions for high entropy alloys. These compositions are synthesized by the carbothermal shock method, which uses a carbon substrate, a solution of salts of the desired metals and a strong but short current pulse. As a result of the current action, the substrate is instantly heated to a temperature of more than 2000 K, the salts vaporize and the metals "stick" into a single nanosized particle. The carbon substrate with deposited particles is a ready electrode for electrochemical reaction.

Описание проекта

Кураторы

Nikita Morozov

Kirill Kulikov

morozov_nikita@sacmt-itmo.ru

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Creating an electrochemical reactor for converting CO₂ into high-value-added substances

Название проекта

The aim of the project is to transition the technology to industrial application.�The project tasks encompass not only the search for suitable catalysts for this process, their synthesis, and testing, but also the handling of equipment, process control systems for a scalable reactor, automation, and process optimization.

Описание проекта

Кураторы

Nikita Morozov

Streminskaia Regina

morozov_nikita@sacmt-itmo.ru

Nikitenko Danil

Ishmukhametov Rustam

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Study of synergic effect of MXene Ti3C2Tx and water-stable MOF-808 hybrid and its potential applications

Название проекта

The aim of the project is to synthesize novel hybrid MXene(Ti3C2Tx)@MOF-808. The tasks include measuring physical properties of this material, and exploring its possible applications, such as adsorption, electrochemistry, etc..

Описание проекта

Кураторы

Xuechen Mi

Beketova Anastasia

mixuechen@scamt-itmo.ru

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Studies of the magnetic field influence on the kinetics�of electrochemical reactions

Название проекта

Magnetic electrocatalysis is a promising area of research in chemistry and catalysis that combines the advantages of electrocatalysis and magnetic materials. Magnetic materials can be used to control and improve electrocatalysis, which can lead to more efficient and cost-effective processes. This technology can find application in various fields, such as electrochemical processes, synthesis of organic compounds, and even in the field of energy.

Описание проекта

Кураторы

Shabalkin Ilia

Mustafina Karina

Ponomarec Anna

shabalkin@scamt-itmo.ru

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Electrocatalytic conversion of biomass oil into high-value compounds

Название проекта

The project holds significant promise, as the successful conversion of bio-oil into high-value products could help promote sustainability and reduce our reliance on traditional fossil fuels. In the initial stages of the project, a comprehensive physical and chemical analysis will be conducted to investigate the composition of the bio-oil. This will be followed by an electrochemical reaction that aims to convert the biomass into a range of products, including the much-needed biofuel.

Описание проекта

Кураторы

Anastasia Dmitrieva

Ekaterina Znamenskaya

Dmitrieva@scamt-itmo.ru

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Проекты FEaR Lab

Научно-исследовательская лаборатория «Гибкая электроника и робототехника»�(«Flexible Electronics And Robotics» или «FEAR») развивается в нескольких направлениях.��Среди них — изучение жидкометаллических систем и интерфейсов и их использование�в широком спектре приложений, в том числе для разработки абсолютно новых синтетических подходов в современной химии материалов, а также для гибкой электроники и аккумуляторных устройств, изучение магнитных материалов и создание магнитоуправляемых мягких роботов для малоинвазивной хирургии и других приложений.

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Development of Liquid Metal Anode Materials for Flexible�and Wearable Electronics

Название проекта

At the center of the project is the development of a core technology for the processing of liquid metal composites in order to create flexible electronics for lithium-ion batteries. In this project, we want to show the fundamental possibility of increasing the capacity and safety of flexible lithium-ion batteries without losing flexibility. The proposed research will develop flexible "semi-fluid" composites based on gallium and its alloys with such promising elements in the context of lithium-ion batteries as germanium, silicon, tin, antimony and bismuth. The resulting composites will be adapted for different types printing in order to create flexible and efficient battery electrodes

Описание проекта

Кураторы

Aleksandra Falchevskaya

Sergei Leonchuk

Maria Yatsuk

falchevskaya@scamt-itmo.ru

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Adjustable porous composite catalytic systems synthesis with the use of liquid NaK alloy as a versatile reagent

Название проекта

The main object of this project is a new method for the solution synthesis of porous materials with catalytic properties based on the use of liquid eutectic NaK-78 alloy as a reagent for chemical reduction, pore formation and structure directing at the same time. The ability to reduce a broad range of elements from their binary compounds reveals new grounds in composites production. Such an adjustable synthetic approach will be a useful tool for modern materials chemistry. The practical application of as-synthesized materials lies in the field of catalytic systems and energy storage devices production.

Описание проекта

Кураторы

Sergei Leonchuk

Maria Zhiltsova

leonchuk@scamt-itmo.ru

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Проекты Biofunctional Materials

Работа лаборатории сосредоточена на разработке биомедицинских материалов для применения в области тканевой инженерии.��Проекты лаборатории направлены на решение таких задач, как высокопроизводительный синтез и анализ данных, разработка скрининговых систем, а также создание платформ для тканевой инженерии сердца.��Каждая прикладная задача представляет собой проект, над которым работают сотрудники лаборатории «Биофункциональные Материалы».

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Array of micro reactors for high throughput organic synthesis

Название проекта

The main object of study herein is a new method for conducting reactions in micro-volumes based on the application of wettability patterns. The new method is aimed to accelerate and miniaturise standard procedures in a process of organic synthesis. Carrying out chemical reactions in solutions has its advantages and disadvantages. The presence of reagents in one phase contributes to an increase in the rate of the process, but the interaction with the solvent usually appears as an additional barrier to the reaction. It has been shown that increasing the surface area of the reaction mass as well as removing the solvent while maintaining homogeneity can significantly increase the reaction rate. This effect is attributed to the peculiarities of the processes occurring at the phase separation, including a decrease in the degree of solvation of the reacting substances. The practical application of this phenomenon in organic synthesis offers the possibility of its miniaturization and acceleration.

Описание проекта

Кураторы

Dmitrii Kartsev

kartsev@scamt-itmo.ru

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