Location History:
- Hickory Hills, IL (US) (1994)
- Somerset, NJ (US) (1997)
- Orland Park, IL (US) (1999)
Company Filing History:
Years Active: 1994-1999
Title: Russell J Nesiewicz: Innovator in Maltodextrin-Based Adhesives
Introduction
Russell J Nesiewicz is a notable inventor based in Somerset, NJ (US). He has made significant contributions to the field of adhesives, particularly through his innovative work with maltodextrin-based formulations. With a total of 4 patents to his name, Nesiewicz has established himself as a key figure in adhesive technology.
Latest Patents
Nesiewicz's latest patents focus on the development of maltodextrin-based adhesives. One of his inventions is directed to remoistenable and non-remoistenable adhesives that contain at least about 50 wt % of a maltodextrin syrup. This syrup has a reducing sugar content of about 5-19 dextrose equivalent and a solids content of about 60-80% water. The invention also incorporates a chemically derivatized starch with specific amylose content and degree of substitution. Another patent details a high solids, water-based remoistenable adhesive that consists of a similar maltodextrin syrup, emphasizing its effectiveness and versatility in various applications.
Career Highlights
Russell J Nesiewicz is currently associated with National Starch and Chemical Investment Holding Corporation. His work has been instrumental in advancing adhesive technologies, particularly those that utilize maltodextrin as a primary component. His innovative approaches have led to the development of adhesives that are not only effective but also environmentally friendly.
Collaborations
Throughout his career, Nesiewicz has collaborated with notable colleagues, including Joseph Wieczorek, Jr and James L Eden. These collaborations have further enriched his research and development efforts in the adhesive industry.
Conclusion
Russell J Nesiewicz is a prominent inventor whose work in maltodextrin-based adhesives has made a significant impact on the industry. His innovative patents and contributions continue to shape the future of adhesive technology.