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solar energy conversion
The efficiency of solar energy conversion and potential activity of the PSII in the leaves differ significantly, with the dentate broad-ovate leaves the highest.
      
The calculation results show that this class of compounds is promising for solar energy conversion.
      
Key areas in the development of photovoltaic methods of solar energy conversion, which open up wide prospects for semiconductor solar energy conversion, are discussed.
      
The article focuses mainly on photovoltaic cells based on III-V heterostructures, primarily on cascade solar cells, which provide the highest efficiency of solar energy conversion and are produced by high-tech methods such as MBE or MOCVD.
      
Preparation of nano-sized silica with solar energy conversion and storage function by immobilization of norbornadiene moieties t
      
Polycrystalline iron sulphide based semiconductors for solar energy conversion
      
Potentialities of iron sulphide semiconductors for solar energy conversion have been outlined.
      
The fluorescent state of the uranyl ion assisting solar energy conversion
      
Geographic and economic aspects of solar energy are linked with the various physical and chemical methods of solar energy conversion to heat, electricity, and endothermal chemical reactions.
      
Solar energy conversion with fluorescent collectors
      
A new principle for solar energy conversion is proposed and evaluated theoretically.
      
All the studies clearly indicated that Bi5Nb3O15 has potential in solar energy conversion.
      
This work has pointed to some key strategies on sustainable process operation, such as the exceptionally high thermodynamic efficiencies of chemical and solar energy conversion in living cells.
      
Solar Energy Conversion Using a Semiconductor Electrode Photosensitized by Tetraphenylporphyrin
      
Reports of cyanobacterial photobiological H2 production are summarized with respect to specific activity, efficiency of solar energy conversion, and maximum H2 concentration attainable.
      
Semiconductor based photoelectrochemical cells for solar energy conversion-An overview
      
An overview of the semiconductor based photoelectrochemical (pec) cells for solar energy conversion is presented.pec cells are of two types: photoelectrolysis cells and photovoltaic cells.
      
Structural and non-structural composites, electrically-conducting polymers, materials obtained by rapid quenching, new developments in hydraulic cements and photothermal solar energy conversion are reviewed.
      
A brief survey is presented of the recent developments and emerging trends in research in photoelectrochemical cell for solar energy conversion utilizing semiconductor electrodes.
      
Influence of surface treatments on CdSe thin films in photoelectro-chemical solar energy conversion
      
 

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