Phillip D. Hustad
Dow Chemical Company
124 Papers
2.2K Citations
Phillip D. Hustad is an academic researcher from Dow Chemical Company. The author has contributed to research in topics: Copolymer & Polymerization. The author has an hindex of 34, co-authored 124 publications. Previous affiliations of Phillip D. Hustad include University of California & Cornell University.
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Papers
Catalytic Production of Olefin Block Copolymers via Chain Shuttling Polymerization
TL;DR: A catalytic system that produces olefin block copolymers with alternating semicrystalline and amorphous segments by varying the ratio of α-olefin to ethylene in the two types of blocks is reported, which maintains excellent elastomeric properties at high temperatures.
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Catalysts for the living insertion polymerization of alkenes: access to new polyolefin architectures using Ziegler-Natta chemistry.
TL;DR: This review article summarizes recent developments in this rapidly growing research area at the interface of synthetic and mechanistic organometallic chemistry, polymer chemistry, and materials science with special emphasis on polymer properties and novel polymeric architectures.
600
Patent
Catalyst composition comprising shuttling agent for ethylene multi-block copolymer formation
Daniel J. Arriola,Edmund M. Carnahan,Yunwa Wilson Cheung,David D. Devore,David D Graf,Phillip D. Hustad,Roger L. Kuhlman,Colin Li Pi Shan,Benjamin C. Poon,Gordon R. Roof,James C. Stevens,Pamela J. Stirn,Timothy T. Wenzel +12 more
- 17 Mar 2005
TL;DR: In this article, a multi-block copolymer is defined for use in forming a multinode copolym, containing two or more segments or blocks differing in chemical or physical properties, and a polymerization process using the same, and the resulting polymers, wherein the composition comprises the admixture or reaction product resulting from combining: (a) a first metal complex olefin polymerization catalyst, (b) a second metal complex OLEF polymerisation catalyst capable of preparing polymers differing from the polymer prepared by catalyst under equivalent polymerization conditions, and (
377
Patent
Ethylene/alpha-olefins block interpolymers
Colin Li Pi Shan,Lonnie G. Hazlitt,Yunwa Wilson Cheung,Benjamin C. Poon,Phillip D. Hustad,Roger L. Kuhlman,Edmund M. Carnahan,Xiaohua Qiu,Angela N. Taha +8 more
- 15 Mar 2007
TL;DR: In this paper, the authors define a class of block interpolymers, which are characterized by an average block index, ABI, which is greater than zero and up to about 1.3.
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