Can the photosynthesis first step quantum mechanism be explained?
Marco Sacilotti, Euclides Almeida, Claudia C. B. O. Mota, Frederico, Dias Nunes, Anderson S. L. Gomes

TL;DR
This paper proposes a new qualitative model for the initial step of photosynthesis, explaining charge separation through semiconductor band gap engineering concepts, challenging the traditional quantum mechanics-based explanations.
Contribution
It introduces a novel model using semiconductor principles to explain charge separation in photosynthesis, addressing shortcomings of existing theories.
Findings
Charges separation occurs via staggered energy band configurations.
Green light emission relates to energy spent on charges separation.
Traditional models lack a driving force explanation for charge separation.
Abstract
Photosynthesis first step mechanism concerns the sunlight absorption and both negative and positive charges separation. Recent and important photosynthesis literature claims that this mechanism is quantum mechanics controlled, however without presenting qualitative or quantitative scientifically based mechanism. The present accepted and old-fashioned photosynthesis mechanism model suffers from few drawbacks and an important issue is the absence of driving force for negative and positive charges separation. This article presents a new qualitative model for this first step mechanism in natural catalytic systems such as photosynthesis in green leaves. The model uses a concept of semiconductor band gap engineering, such as the staggered energy band gap line-up in semiconductors. To explain the primary mechanism in natural photosynthesis the proposal is the following: incident light is…
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Taxonomy
TopicsSpectroscopy and Quantum Chemical Studies · Photosynthetic Processes and Mechanisms · Plant and animal studies
