Negative / Null Result ReportEnergy
Sungeun Yang, Young Joo Tak, Jiwhan Kim et al. · 2016 · ACS Catalysis
Single-atom catalysts (SACs) provide an ideal platform for reducing noble-metal usage. SACs also exhibit unusual catalytic properties due to the absence of a metal surface. The role of the support may have a significant effect on the…
View details →Negative / Null Result ReportOpen accessEnergy
Ramadan J. Mustafa, Mohamed R. Gomaa, Mujahed Al‐Dhaifallah et al. · 2020 · Sustainability
This study scrutinizes the reliability and validity of existing analyses that focus on the impact of various environmental factors on a photovoltaic (PV) system’s performance. For the first time, four environmental factors (the accumulation of dust, water droplets, birds’ droppings, and partial shading conditions) affecting system performance are investigated, simultaneously, in one study. The results obtained from this investigation demonstrate that the accumulation of dust, shading, and bird fouling has a significant effect on PV current and voltage, and consequently, the harvested PV energy
View details →Negative / Null Result ReportOpen accessEnergy
Xiaoyu Chen, Dongli Wei, Mårten S. G. Ahlquist · 2021 · Organometallics
A CoPc/CNT system has been only recently reported to transform CO2 to methanol via electrochemical reductions, despite the fact that catalyst has been studied extensively since the 1980s. The explanation of high methanol selectivity lies behind the fact that in the new report CoPc exists mainly as a monomer, while in earlier works aggregates dominate. Here, we have studied the reactivity of monomeric and dimeric CoPc by DFT. The mechanism involves rate-limiting CO2 association, with the C–O cleavage step having very similar activation free energy. Once the Co–CO– intermediate is formed, the re
View details →Negative / Null Result ReportOpen accessEnergy
Casey M. Godwin, David C. Hietala, Aubrey R. Lashaway et al. · 2017 · Environmental Science & Technology
For algal biofuels to be economically sustainable and avoid exacerbating nutrient pollution, algal cultivation and processing must maximize rates of biofuel production while simultaneously minimizing the consumption of nitrogen (N) and…
View details →Negative / Null Result ReportOpen accessEnergy
Adeyemi Ogundipe, Opeyemi Akınyemi, Oluwatomisin Ogundipe · 2016 · Covenant University Repository (Covenant University)
The study examines the relationship between electricity consumption and economic development using an extended neoclassical model for the period 1970-2013. The study incorporates the uniqueness of the Nigerian economy by controlling for…
View details →Negative / Null Result ReportOpen accessEnergy
Yuqi Ren, Miao Cheng, Hongbin He et al. · 2025 · Nature Communications
CO2-to-hydrocarbon fuel conversion via artificial photosynthesis is limited by catalyst poisoning under high O2 partial pressures and sluggish C2-product formation. Herein, Ru0.6Cu1(Cu0–Cu1+)/CeO2 catalysts with adaptive O2 tolerance are…
View details →Negative / Null Result ReportOpen accessEnergy
Jeong‐Mi Do, Ji Won Hong, Ho‐Sung Yoon · 2025 · Frontiers in Microbiology
Traditional nanoparticle synthesis relies on chemical and physical methods that often involve hazardous reagents, high energy consumption, and environmental toxicity. As a sustainable alternative, biological synthesis utilizes biomolecules in an eco-friendly manner to form nanoparticles. This study explores the green synthesis of silver nanoparticles (AgNPs) using extracellular polymeric substances (EPS) secreted by the microalga Graesiella emersonii KNUA204, highlighting the potential of microalgal biomolecules in nanotechnology. EPS-rich supernatant from G. emersonii enabled AgNP formation u
View details →Negative / Null Result ReportOpen accessEnergy
Jingwen Shi, Ning Li, Yan Liang et al. · 2025 · Angewandte Chemie International Edition
Abstract The transfer path of photogenerated charges greatly affects the final photocatalytic performance, but this important fact has not been clearly demonstrated experimentally. Here, we construct an ultrastable crystalline catalytic…
View details →Negative / Null Result ReportOpen accessEnergy
Haisheng Zhang, Jiawei Li, Haijing Yan et al. · 2025 · Advanced Materials
Proton exchange membrane water electrolysis (PEMWE) is a promising blueprint for the industrial production of green hydrogen in the short term, but its large-scale deployment is extremely constrained by the high cost and low storage of…
View details →