Phototropic and skototropic growth in inorganic films

We report herein phototropic growth toward, and skototropic growth away from, an incoherent, unstructured, low-intensity light stimulus in the deposition of nonliving, inorganic material. Fundamental light–matter interactions yield growth of inorganic deposits with ordered mesostructures that are a function of the characteristics of the light stimulus. Illumination at normal incidence, as well as at substantial inclination, resulted in phototropic growth toward the direction of incidence. However, illumination incident at shallow inclinations resulted in growth away from the stimulus, a skototropic response. We show that the skototropic behavior of these materials is an emergent phenomenon produced primarily by nearest-neighbor optical scattering interactions during growth. We moreover observe similar scaling relations between the morphologies of the inorganic deposits and the growth habits of trees and forest stands, despite the differences in growth mechanisms and differences of >10 8 in scale length.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-09-28
DOI
https://doi.org/10.1073/pnas.2611986123
Primary Topic
Photonic Crystals and Applications
Type
article
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article

Phototropic and skototropic growth in inorganic films

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Proceedings of the National Academy of Sciences
Photonic Crystals and Applications
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Phototropic and skototropic growth in inorganic films

Nathan S. Lewis, Azhar I. Carim, Jonathan Robert Thompson, Madeline Claire Meier, Matthias Hermann Richter, Wen-Hui Sophia Cheng, Harry Albert Atwater, Nicolas A. Batara, Sisir Yalamanchili, Ariel A. Struzyk
article en

Abstract

We report herein phototropic growth toward, and skototropic growth away from, an incoherent, unstructured, low-intensity light stimulus in the deposition of nonliving, inorganic material. Fundamental light–matter interactions yield growth of inorganic deposits with ordered mesostructures that are a function of the characteristics of the light stimulus. Illumination at normal incidence, as well as at substantial inclination, resulted in phototropic growth toward the direction of incidence. However, illumination incident at shallow inclinations resulted in growth away from the stimulus, a skototropic response. We show that the skototropic behavior of these materials is an emergent phenomenon produced primarily by nearest-neighbor optical scattering interactions during growth. We moreover observe similar scaling relations between the morphologies of the inorganic deposits and the growth habits of trees and forest stands, despite the differences in growth mechanisms and differences of >10 8 in scale length.

Proceedings of the National Academy of SciencesVol. 123(40)
California Institute of Technology (US), National Cheng Kung University (TW)
Openalex Percentile: Top 14%
Photonic Crystals and Applications
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