Tom Hauffman
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Explore the profile of Tom Hauffman including associated specialties, affiliations and a list of published articles.
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28
Citations
114
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Recent Articles
1.
Ahadzadeh S, de la Fuente B, Hamed H, Brammertz G, Hauffman T, Cambre S, et al.
ACS Appl Mater Interfaces
. 2024 Nov;
16(47):65687-65701.
PMID: 39547657
Interface engineering is the key to optimizing optoelectronic device performance, addressing challenges like reducing potential barriers, passivating interface traps, and controlling recombination of charges. Metal fluorides such as lithium fluoride...
2.
Ma N, Kosasang S, Theissen J, Gys N, Hauffman T, Otake K, et al.
Chem Sci
. 2024 Oct;
PMID: 39386911
Controlling the structure and functionality of crystalline metal-organic frameworks (MOFs) using molecular building units and post-synthetic functionalisation presents challenges when extending this approach to their amorphous counterparts (aMOFs). Here, we...
3.
de la Fuente B, Khurana D, Vereecken P, Hubin A, Hauffman T
ACS Appl Mater Interfaces
. 2024 Sep;
16(37):49926-49934.
PMID: 39231432
TiO is the most widely used material in photoelectrocatalytic systems. A key parameter to understand its efficacy in such systems is the band bending in the semiconductor layer. In this...
4.
Tian Y, Florenciano I, Xia H, Li Q, Baysal H, Zhu D, et al.
Adv Mater
. 2023 Dec;
36(15):e2307945.
PMID: 38100238
The emerging fields of wearables and the Internet of Things introduce the need for electronics and power sources with unconventional form factors: large area, customizable shape, and flexibility. Thermoelectric (TE)...
5.
Su Y, Vekeman J, Brigiano F, Hessou E, Zhao Y, Sorgeloos D, et al.
Phys Chem Chem Phys
. 2023 Apr;
25(17):12148-12156.
PMID: 37070707
Calcium oxalate precipitation is a common pathological calcification in the human body, whereby crystallite morphology is influenced by the chelating properties of biological ions such as citrate. It has been...
6.
Gys N, Pawlak B, Marcoen K, Reekmans G, Velasco L, An R, et al.
Chempluschem
. 2023 Feb;
88(3):e202200441.
PMID: 36802130
While synthesis-properties-performance correlations are being studied for organophosphonic acid grafted TiO , their stability and the impact of the exposure conditions on possible changes in the interfacial surface chemistry remain...
7.
Gys N, Pawlak B, Luntadila Lufungula L, Marcoen K, Wyns K, Baert K, et al.
RSC Adv
. 2022 Dec;
12(55):36046-36062.
PMID: 36545072
Modification of metal oxides with organophosphonic acids (PAs) provides the ability to control and tailor the surface properties. The metal oxide phosphonic acid bond (M-O-P) is known to be stable...
8.
Gys N, An R, Pawlak B, Vogelsang D, Wyns K, Baert K, et al.
ACS Omega
. 2022 Dec;
7(49):45409-45421.
PMID: 36530305
Amino-alkylphosphonic acid-grafted TiO materials are of increasing interest in a variety of applications such as metal sorption, heterogeneous catalysis, CO capture, and enzyme immobilization. To date, systematic insights into the...
9.
Obst M, Tietze M, Matavz A, Rodriguez-Hermida S, Marcoen K, Hauffman T, et al.
Inorg Chem
. 2022 Oct;
61(43):17137-17143.
PMID: 36260857
Composites formed by a metal-organic framework (MOF) and an ionic liquid (IL) are potentially interesting materials for applications ranging from gas separation to electrochemical devices. Consequently, there is a need...
10.
Demaude A, Baert K, Petitjean D, Zveny J, Goormaghtigh E, Hauffman T, et al.
Adv Sci (Weinh)
. 2022 Mar;
9(15):e2200237.
PMID: 35343108
In this work, immobilization of the often unwanted filaments in dielectric barrier discharges (DBD) is achieved and used for one-step deposition of patterned coatings. By texturing one of the dielectric...