Crystalline silicon solar cells are currently the leading technology in the photovoltaic market with no great expectable change in the shares. The scientific community works on the further development and improvements of state-of-the-art as well as new solar cell materials. This paper reports on a chemical methodology for selective etching to study the metallization step in monocrystalline silicon solar cells. The object of study is a complete processed silicon solar cell which was cleaved via laser beam on the back side and broken per hand to obtain stripes of the size 15.6×1 cm2. In the following a sequence of etching chemical solutions to selectively remove the components of the front side silver contact was applied. Scanning electron mi...
A dispensing process was developed, allowing for a single step, contactless front side metallization...
At present, screen-printing is the industrial method of choice for forming front-side contacts. Gran...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
Artículo de publicación ISICrystalline silicon solar cells are currently the leading technology in t...
The submitted work deals with the methods for manufacturing and analysis of contacts on crystalline ...
One-step screen-printing processes are still the most widely-used technique for the front-side metal...
The present work is an evaluation of the possibilities that electrochemical processes offer for the ...
The photovoltaic process requires a surface modification of the Si substrate in a way that the refle...
AbstractScreen printed front side contacts of textured, mono-crystalline p-type silicon solar cells ...
The screen printed contact quality influences directly the mono-crystalline silicon solar cells effi...
Production steps of crystalline silicon solar cells include several physical and chemical processes ...
Screen-printing technique is used since 1970’s, but the understanding of screen printed contacts is ...
An alternative metallization scheme for c-Si solar cells other than Ag screen printing, has gained i...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
A dispensing process was developed, allowing for a single step, contactless front side metallization...
At present, screen-printing is the industrial method of choice for forming front-side contacts. Gran...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
Artículo de publicación ISICrystalline silicon solar cells are currently the leading technology in t...
The submitted work deals with the methods for manufacturing and analysis of contacts on crystalline ...
One-step screen-printing processes are still the most widely-used technique for the front-side metal...
The present work is an evaluation of the possibilities that electrochemical processes offer for the ...
The photovoltaic process requires a surface modification of the Si substrate in a way that the refle...
AbstractScreen printed front side contacts of textured, mono-crystalline p-type silicon solar cells ...
The screen printed contact quality influences directly the mono-crystalline silicon solar cells effi...
Production steps of crystalline silicon solar cells include several physical and chemical processes ...
Screen-printing technique is used since 1970’s, but the understanding of screen printed contacts is ...
An alternative metallization scheme for c-Si solar cells other than Ag screen printing, has gained i...
The vast majority of today's solar modules are produced using screen printing of silver pastes, whic...
The contact formation on high efficiency solar cells using a high temperature process is the subject...
A dispensing process was developed, allowing for a single step, contactless front side metallization...
At present, screen-printing is the industrial method of choice for forming front-side contacts. Gran...
The contact formation on high efficiency solar cells using a high temperature process is the subject...