#  Publications 

 



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### 2025

Grinham J, Alvarenga J, Richter-Lunn K, Lazovskis P, Ejarque S, Bilbao A, Bechthold M, Aizenberg J. [Effective Indirect Evaporative Cooling Using Superhydrophobic Nano-Architectured Porous Ceramics](/publication/effective-indirect-evaporative-cooling-using-superhydrophobic-nano-architectured-porous). Applied Energy. 2025;397.



 

 

Grinham J, Alvarenga J, Richter-Lunn K, Lazovskis P, Ejarque S, Bilbao A, Bechthold M, Aizenberg J. [Effective Indirect Evaporative Cooling Using Superhydrophobic Nano-Architectured Porous Ceramics](/publication/effective-indirect-evaporative-cooling-using-superhydrophobic-nano-architectured-porous). Applied Energy. 2025;397.



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1016/j.apenergy.2025.126297)
 
Indirect evaporative coolers (IECs) offer a unique opportunity to meet the rapidly growing global cooling demand while reducing the environmental impact of traditional vapor compression systems. Despite their promise, widespread adoption of IECs has been...



 

 

- [ descriptionPublisher's Version](https://doi.org/10.1016/j.apenergy.2025.126297)
 
 

Lim KRG, Owen CJ, Kaiser SK, Routh PK, Mendoza M, Park K-CK, Kim T-S, Garg S, Gardener JA, Russotto L, et al. [Nanoscale wetting controls reactive Pd ensembles in synthesis of dilute PdAu alloy catalysts](/publication/nanoscale-wetting-controls-reactive-pd-ensembles-synthesis-dilute-pdau-alloy-catalysts). Nature Communications. 2025;16:6293.



 

 

Lim KRG, Owen CJ, Kaiser SK, Routh PK, Mendoza M, Park K-CK, Kim T-S, Garg S, Gardener JA, Russotto L, et al. [Nanoscale wetting controls reactive Pd ensembles in synthesis of dilute PdAu alloy catalysts](/publication/nanoscale-wetting-controls-reactive-pd-ensembles-synthesis-dilute-pdau-alloy-catalysts). Nature Communications. 2025;16:6293.



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1038/s41467-025-61540-4)
 
The performance of bimetallic dilute alloy catalysts is largely determined by the size of minority metal ensembles on the nanoparticle surface. By analyzing the synthesis of catalysts comprising Pd8Au92 nanoparticles supported on silica using surface...



 

 

- [ descriptionPublisher's Version](https://doi.org/10.1038/s41467-025-61540-4)
 
 

Lazovskis P, Alvarenga J, Teitelbaum E, Cabrera P, Merchant C, Rucewicz S, Rebbagondla JM, Norford L, Aizenberg J, Grinham J, et al. [Sorption vs. Separation – Prototype Comparison of Two Approaches to Façade-Integrated Dehumidification](/publication/sorption-vs-separation-prototype-comparison-two-approaches-facade-integrated-0). Building and Environment. 2025:113486+.



 

 

Lazovskis P, Alvarenga J, Teitelbaum E, Cabrera P, Merchant C, Rucewicz S, Rebbagondla JM, Norford L, Aizenberg J, Grinham J, et al. [Sorption vs. Separation – Prototype Comparison of Two Approaches to Façade-Integrated Dehumidification](/publication/sorption-vs-separation-prototype-comparison-two-approaches-facade-integrated-0). Building and Environment. 2025:113486+.



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1016/j.buildenv.2025.113486)
 
We present a dehumidification concept which reduces building cooling energy loads, achieving higher efficiency comfort conditions and healthier air for hot and humid climates. We demonstrate an alternative to vapor-compression air conditioning, by using...



 

 

- [ descriptionPublisher's Version](https://doi.org/10.1016/j.buildenv.2025.113486)
 
 

Li Y, Cheng D, Son G, Shneidman AV, Lim KRG, Aizenberg J, Sautet P. [Modeling electron storage at the interface between Au and anatase-TiO2 under ambient conditions](/publication/modeling-electron-storage-interface-between-au-and-anatase-tio2-under-ambient). Chem Catalysis. 2025:101430.



 

 

Li Y, Cheng D, Son G, Shneidman AV, Lim KRG, Aizenberg J, Sautet P. [Modeling electron storage at the interface between Au and anatase-TiO2 under ambient conditions](/publication/modeling-electron-storage-interface-between-au-and-anatase-tio2-under-ambient). Chem Catalysis. 2025:101430.



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1016/j.checat.2025.101430)
 
Au supported on TiO2 is a promising photocatalyst due to its ability to catalyze reactions under illumination and store electrons for sustained reactivity in the dark. Using density functional theory (DFT), we investigate the structural evolution and...



 

 

- [ descriptionPublisher's Version](https://doi.org/10.1016/j.checat.2025.101430)
 
 

Lim KRG ", Azizli T, Kaiser SK, Aizenberg M, Montemore MM, Aizenberg J. [Effects of Pd ensemble size in dilute and single atom alloy PdAu catalysts for one-pot selective hydrogenation and reductive amination](/publication/effects-pd-ensemble-size-dilute-and-single-atom-alloy-pdau-catalysts-one-pot-selective). Catal. Sci. Technol. 2025.



 

 

Lim KRG ", Azizli T, Kaiser SK, Aizenberg M, Montemore MM, Aizenberg J. [Effects of Pd ensemble size in dilute and single atom alloy PdAu catalysts for one-pot selective hydrogenation and reductive amination](/publication/effects-pd-ensemble-size-dilute-and-single-atom-alloy-pdau-catalysts-one-pot-selective). Catal. Sci. Technol. 2025.



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](http://dx.doi.org/10.1039/D5CY00441A)
 
In the one-pot reaction between nitroarenes, aldehydes, and hydrogen, the desired outcome is the selective hydrogenation of nitroarenes to form aminoarenes that condense with aldehydes to yield pharmaceutically relevant imines and N-alkylamines. One...



 

 

- [ descriptionPublisher's Version](http://dx.doi.org/10.1039/D5CY00441A)
 
 

Volkov VV, Aizenberg J, Perry CC. [Red blood cell Raman microscopy: modelling sub-cellular biochemistry](/publication/red-blood-cell-raman-microscopy-modelling-sub-cellular-biochemistry). 2025;27(22):11955–11973,.



 

 

Volkov VV, Aizenberg J, Perry CC. [Red blood cell Raman microscopy: modelling sub-cellular biochemistry](/publication/red-blood-cell-raman-microscopy-modelling-sub-cellular-biochemistry). 2025;27(22):11955–11973,.



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1039/D5CP00172B)
 
We develop a quantitative Raman microscopy approach to study erythrocyte biochemistry at the sub-cellular level. To model Raman microscopy images, we review theory of Raman tensors and derive expressions for Raman responses suitable to compute Raman micro...



 

 

- [ descriptionPublisher's Version](https://doi.org/10.1039/D5CP00172B)
 
 

 



 

 

 

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