Versatility of
Polymer Science

Dr. Wan-Li Liu(劉萬里 博士), Ph.D./MBA (2026)

劉萬里博士,博士 / 工商管理碩士 (2026)

刘万里博士,博士 / 工商管理硕士 (2026)

About Dr. Wan-Li Liu

關於 劉萬里博士

关于 刘万里博士

My education consists of a joint Ph.D. degree in Chemistry and Macromolecular Science & Engineering from the University of Michigan at Ann Arbor, 1980 with an MBA (summa cum laude).

Dissertation advisor – Professor Charles G. Overberger (former President of ACS & IUPAC – Polymer Division, and Chief Editor of the Journal of Polymer Science, etc.; > 500 research papers).

Education

Joint Ph.D. 1980 Chemistry and Macromolecular Science & Engineering (Joint Degree)
MBA 1993 Business Administration (summa cum laude)
M.S. 1978 Macromolecular Science & Engineering
M.S. 1978 Organic Chemistry
M.S. 1975 Polymer Science
B.S. 1971 Chemistry

Versatility of Polymer Science

”Versatility of Polymer Science” is based on my academic training in Polymer Science and Macromolecular Science & Engineering at two well-known graduate schools. This book is also based on my diversified industrial experience with seven top global chemical companies in different polymer products. It is mainly designed to provide a comprehensive (A to Z) overview & applications in polymer science.

This book can be used as:
1. Textbook for polymer science: college and graduate school
2. Self-learning book: new scientists, engineers and project managers
3. Reference for experimental design in polymer property optimization

Section A | Author

Dr. Wan-Li Liu(劉萬里 博士) 劉萬里博士 刘万里博士 holds a joint Ph.D. in Chemistry and Macromolecular Science & Engineering from the University of Michigan at Ann Arbor, and an MBA (Summa Cum Laude). He trained under Professor Charles G. Overberger (> 500 research publications), former ACS/IUPAC (Polymer) President and Chief Editor of the Journal of Polymer Science. With over 5 decades of R & D experience, Dr. Liu holds 53 patents and publications.

His career spans seven leading global chemical companies, including Ball Corp., General Electric (Silicone – RTV), Rohm & Haas, ExxonMobil, Solvay, Benjamin Moore Paints, and BASF. As a founder and President of Polymer Consulting, LLC, he continues advancing polymer innovation.

Dr. Liu’s expertise bridges academia and industry with unique depth. His work shapes progress in organic polymers, chemical intermediates, specialty monomers, additives, building blocks, polymerization techniques, plastics ABC (alloys /blends/composites), engineering plastics, & CASE (coating, adhesive, sealant, & elastomer) material, etc.

A visionary leader, he inspires innovation through science and technology. His lifelong pursuit: advancing sustainable materials for a better future.

Section B | Introduction of Polymer Science

Section C | Polymmerization Mechanisms

Section D | Polymerization Techniques

Section E | Commercially Available Plastics

Section F | Polymer Modifications - A (A) BC

Section G | Polymer Additive

Section H | Physical Properties of Polymers

Section I | Semi-crystalline and Amorphous Polymers

Section J | Polymer Characterization

Section K | Synthetic Inorganic/Organic (Hybrid) Polymers

Section L | Natural Polymers

Section M | Biopolymers and Biodegradable Polymers

Section N | Conducting Polymers

Section O | Polymer Coatings

Section P | Plastics (Polymer) Processing

Section Q | Applications of Plastics (Polymer)

Section R | Conclusions and Forecasting/Suggestions

Section S | References

Versatility of Polymer Science

Dr. Wan-Li Liu(劉萬里 博士), Ph.D./MBA (2026)

劉萬里博士,博士 / 工商管理碩士 (2026)

刘万里博士,博士 / 工商管理硕士 (2026)

Polymer Science Explained

Polymer Formations & Mechanisms

Polymer Types & Applications

Learn Polymer Science

This learning hub introduces core concepts and experimental design in additives, building blocks, organic chemical intermediates, commodity/dual/specialty/multi-functional vinyl and cross-linking monomers, WAM (wet adhesion monomers), initiators – i) radical – thermal, redox, photo/UV, RAFT (reversible addition-fragmentation chain transfer polymerization), ii) anionic, iii) cationic, and iv) Ziegler-Natta, RMR, primary/secondary/tertiary antioxidants, UV stabilizers, UV absorbers, binders, pigments/colorants, HASE (hydrophobically alkali swellable emulsion) & HEUR (hydrophobically ethoxylated urethane) associative thickeners, crosslinking agents, fillers, defoamers, surfactants, coalescents, flame retardants, VII (viscosity index improvers), PPD (pour point depressants), structure/property correlation of polymer science for college/graduate students and industrial R&D/production professionals seeking clear and accessible guidance.

Explore fundamentals, e.g., organic [addition, condensation, and ring-opening (ROP versus ROMP), homo-, co-, and ter-polymerization mechanisms] for statistical, branched, block, alternating, graft, comb, star, RMR, and IPN (interpenetrating polymer network), TPE (thermoplastic elastomer), organic/inorganic (hybrid) – 1) silicones – RTV (room temperature vulcanization) and LIM (liquid injection molding) and 2) polyphosphazenes, commodity/engineering/advanced engineering plastics, high-temperature polymers, coordination (MOFs/COFs), semi-crystalline/amorphous, bio/biodegradable, anti-fouling (self-cleaning), smart, natural, conducting, commercially available polymers, CASE (coatings, adhesives, sealants, and elastomers) materials, plastics ABC (alloys, blends, and composites), semi-crystalline/amorphous polymers, core/shell impact modifiers, processing aids, adhesion promoters, polymer fibers, non-ionic/anionic/ cationic/amphoteric surfactants, heat and UV light stabilizers, flame retardants, end-use applications, and applied industrial innovative materials, polymerization mechanism and techniques – bulk, homo-/hetero-generous solution (difference in δ – solubility parameters), emulsion, suspension, and characterization, plastics processing, compatibilizers, colorants, fillers, nucleating agents, antistatic agents, plasticizers, heat/UV light stabilizers, flame retardants, curing agents, coupling agents, and real world applications presented through concise explanations designed to build confidence and deepen understanding at every step added tips reinforce steady progress.

High Grades

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