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Dive into the research topics where Matheus Adrianus Dam is active.

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Featured researches published by Matheus Adrianus Dam.


Combinatorial Chemistry & High Throughput Screening | 2012

Accelerating Research into Bio-Based FDCA-Polyesters by Using Small Scale Parallel Film Reactors

Gert-Jan M. Gruter; Laszlo Sipos; Matheus Adrianus Dam

High Throughput experimentation has been well established as a tool in early stage catalyst development and catalyst and process scale-up today. One of the more challenging areas of catalytic research is polymer catalysis. The main difference with most non-polymer catalytic conversions is the fact that the product is not a well defined molecule and the catalytic performance cannot be easily expressed only in terms of catalyst activity and selectivity. In polymerization reactions, polymer chains are formed that can have various lengths (resulting in a molecular weight distribution rather than a defined molecular weight), that can have different compositions (when random or block co-polymers are produced), that can have cross-linking (often significantly affecting physical properties), that can have different endgroups (often affecting subsequent processing steps) and several other variations. In addition, for polyolefins, mass and heat transfer, oxygen and moisture sensitivity, stereoregularity and many other intrinsic features make relevant high throughput screening in this field an incredible challenge. For polycondensation reactions performed in the melt often the viscosity becomes already high at modest molecular weights, which greatly influences mass transfer of the condensation product (often water or methanol). When reactions become mass transfer limited, catalyst performance comparison is often no longer relevant. This however does not mean that relevant experiments for these application areas cannot be performed on small scale. Relevant catalyst screening experiments for polycondensation reactions can be performed in very efficient small scale parallel equipment. Both transesterification and polycondensation as well as post condensation through solid-stating in parallel equipment have been developed. Next to polymer synthesis, polymer characterization also needs to be accelerated without making concessions to quality in order to draw relevant conclusions.


Archive | 2010

METHOD FOR THE PREPARATION OF 2,5-FURANDICARBOXYLIC ACID AND ESTERS THEREOF

De Diego Cesar Muñoz; Wayne Paul Schammel; Matheus Adrianus Dam; Gerardus Johannes Maria Gruter


Macromolecular Materials and Engineering | 2015

Isothermal Crystallization Kinetics of Poly (Ethylene 2,5-Furandicarboxylate)

Jesper Gabriël van Berkel; Nathanael Guigo; Jeffrey John Kolstad; Laszlo Sipos; Bing Wang; Matheus Adrianus Dam; Nicolas Sbirrazzuoli


Archive | 2010

Method for the preparation of 2,5-furandicarboxylic acid and for the preparation of the dialkyl ester of 2,5-furandicarboxylic acid

De Diego Cesar Muñoz; Matheus Adrianus Dam; Gerardus Johannes Maria Gruter


Archive | 2012

A process for preparing a polymer product having a 2,5-furandicarboxylate moiety within the polymer backbone to be used in bottle, film or fibre applications

Laszlo Sipos; Gerardus Johannes Maria Gruter; Jefffrey John Kolstad; Matheus Adrianus Dam


Archive | 2013

PROCESS FOR THE PREPARATION OF BENZENE DERIVATIVES FROM FURAN DERIVATIVES

Bing Wang; Gerardus Johannes Maria Gruter; Matheus Adrianus Dam; Robert M. Kriegel


Archive | 2014

Process for preparing a furan-based polyamide, a furan-based oligomer and compositions and articles comprising the furan-based polyamide

Ate Duursma; René Aberson; Dee Dee Smith; Joel D. Flores; Matheus Adrianus Dam; Gerardus Johannes Maria Gruter


Archive | 2016

PROCESS FOR PURIFYING AN ACID COMPOSITION COMPRISING 2-FORMYL-FURAN-5-CARBOXYLIC ACID AND 2,5-FURANDICARBOXYLIC ACID

Jagdeep Singh; Benjamin Mckay; Bing Wang; Matheus Adrianus Dam; Gerardus Johannes Maria Gruter; Sousa Dias Ana Sofia Vagueiro De


Archive | 2015

Process for enhancing the molecular weight of a polyester

Jeffrey John Kolstad; Gerardus Johannes Maria Gruter; Matheus Adrianus Dam; Berkel Jesper Gabriël Van; Robert Joseph Schiavone; Marion L. Andrews


Archive | 2016

POLYAMIDES CONTAINING THE BIO-BASED 2,5-FURANDICARBOXYLIC ACID

DeeDee Smith; Joel D. Flores; René Aberson; Matheus Adrianus Dam; Ate Duursma; Gerardus Johannes Maria Gruter

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Bing Wang

The Coca-Cola Company

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Joel D. Flores

University of Southern Mississippi

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Jesper Gabriël van Berkel

Centre national de la recherche scientifique

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Nathanael Guigo

Centre national de la recherche scientifique

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Nicolas Sbirrazzuoli

Centre national de la recherche scientifique

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