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Introduction to scientific research at the School of Chemical Engineering, Hefei University of Technology

This direction is mainly engaged in basic theoretical research on the synthesis and application of organic functional polymers and fine polymers. It uses polymer molecule design methods to study multi-level structure polymer systems through controllable synthesis reaction technology, and involves the development of multi-phase polymer systems.

Structure, properties and rheology; nanocomposite polymers; polymer/inorganic hybrid composites; functional and green polymers; polymer composite modification, etc.

This direction is one of the important research directions of the first-level doctoral program in materials science and engineering. There are currently 3 professors (2 doctoral supervisors) and 10 teachers with doctorate degrees. They have undertaken more than 20 national, provincial and ministerial level research and fund projects.

He has won more than 10 provincial and ministerial science and technology awards and published more than 100 papers since 2000, including more than 40 papers included in SCI and EI.

In terms of the controllable synthesis of multi-level polymers, we use a combination of molecular design and performance design to study the controllable synthesis principles and implementation methods of dendritic structure polymers, core-shell structure polymers, and fixed-point graft structure polymers, and

Conduct research on the relationship between structure, performance and function.

Currently, he is undertaking two research projects funded by the National Natural Science Foundation of China. In 2004, he published 5 papers in Advanced Materials, Macromolecules, Polymer and other journals.

In terms of polymer composite modification, we will continue to carry out basic theoretical and applied research on compatibility, interface characteristics, morphology and size control and damage mechanisms, life prediction and interface molecular binding states of polymer mixtures, and conduct research on

Conduct in-depth theoretical research and application development work on the organic polymer/inorganic hybrid composite mechanism, the physical and chemical properties of polymer nanocomposite systems, and molecular tailoring and assembly; currently undertaking 2 National Natural Science Foundation of China studies, and has been published in the Journal of

Published 14 papers in international journals such as Polymer Science-Part B, Journal of Applied Polymer Science, Polymer Science and Engineering.

It has established long-term scientific research and talent training cooperation relationships with large enterprises such as Anhui Guofeng Group, Wanbei Coal and Electricity Group, Anhui Fengyuan Group, Anhui Chlor-Alkali Group, Huangshan Yongjia Group, etc., and has established a number of industry-university-research projects

center.

In terms of functions and green polymers (stealth coatings, UV-curable coatings, thermochromic gels, water-based coatings, water-based adhesives, amphiphilic coatings), we conduct research on light, heat, electromagnetism, mechanics, biology, etc.

Basic research and application development work on the application of functional polymer materials, and expanding into the direction of green degradable polymer functional materials and environmentally friendly polymer materials.

Currently undertaking research on a National Natural Science Foundation project and a large number of corporate commissioned projects.

At the same time, projects such as acrylic cathodic electrophoretic paint, quick-drying putty, and amphiphilic paint have been successfully used in the diesel engine, automobile, forklift, and air-conditioning industries in Shanghai, Anhui, and other places, bringing significant economic benefits to the enterprise.

The environmentally friendly water-based adhesive series has been officially produced by companies in Hefei and other places, meeting market demand.

Preparation Technology and Process of Inorganic Functional Materials Inorganic functional materials include all functional materials except organic polymers and composite materials. They occupy an important position in the development of the national economy. The research and development of their preparation methods are increasingly attracting the attention of domestic and foreign researchers.

of great importance.

This direction focuses on the preparation of new mesoscopic materials we have selected, such as catalyst materials, optical functional materials, and mineral materials. We conduct material design and process optimization according to the needs of the application process, and combine the latest trends and research hot spots in the development of chemical engineering disciplines.

, carry out the use of chemical engineering theories and methods to solve key problems in the preparation process of new materials at the mesoscopic scale. The goal is to control the microstructure and performance of materials through the study of the preparation process-microstructure-performance relationship.

On the one hand, we expand traditional chemical engineering technologies through research, such as supergravity technology, microgravity technology, supercritical technology, hydrothermal technology, membrane technology, etc., and apply them to the preparation of new materials at the mesoscopic scale; on the other hand, we develop new units

Technology and reaction – Separate and integrate technology and solve the technical problems of process amplification to achieve large-scale production of relevant new materials.

Through research and innovation, not only can key issues in the production of new materials be solved, but also the development of the emerging discipline of materials chemical engineering will be promoted.

In recent years, this direction has undertaken 3 National Natural Science Foundation projects, 1 Ministry of Education Outstanding Young Teacher Funding Program, 2 Ministry of Education Start-up Funds for Returned Overseas Students, 6 Anhui Provincial Natural Science Foundation projects, and 1 Anhui Provincial International Cooperation Project.

, 1 scientific and technological research project in Anhui Province, and a number of enterprise-entrusted cooperation projects.

From 2001 to 2006, he published more than 120 papers, including more than 50 SCI papers in important international academic journals, which have been cited by peers at home and abroad more than 250 times after being retrieved by Web of Science.

Applied for 5 invention patents and transferred many scientific research results.

Won 1 third prize for outstanding scientific and technological achievements in colleges and universities in Anhui Province, and 1 person was awarded the "Anhui Youth May 4th Medal".