\u3cp\u3eDespite the existence of several highly effective and well-characterized passivating materials for crystalline silicon surfaces, the topic of surface passivation and the investigation of new passivating materials remain of considerable interest for silicon photovoltaics research. However, the question of whether and under what circumstances a particular material will provide effective surface passivation remains difficult to answer. In this work, we provide an overview of recent insights relating to this question, drawing from our own work on novel passivation materials including MoO\u3csub\u3ex\u3c/sub\u3e, Nb\u3csub\u3e2\u3c/sub\u3eO\u3csub\u3e5\u3c/sub\u3e, TiO\u3csub\u3ex\u3c/sub\u3e, ZnO, and PO\u3csub\u3ex\u3c/sub\u3e, and il...
Passivation of the crystalline silicon surface is central to the attainment of high-efficiency silic...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
This letter reports effective passivation of crystalline silicon (c-Si) surfaces by thermal atomic l...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
\u3cp\u3eThis letter reports on effective surface passivation of n-type crystalline silicon by ultra...
This letter reports on effective surface passivation of n-type crystalline silicon by ultrathin niob...
This letter reports on effective surface passivation of n-type crystalline silicon by ultrathin niob...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Passivation of the crystalline silicon surface is central to the attainment of high-efficiency silic...
Passivation of the crystalline silicon surface is central to the attainment of high-efficiency silic...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
This letter reports effective passivation of crystalline silicon (c-Si) surfaces by thermal atomic l...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
Despite the existence of several highly effective and well-characterized passivating materials for c...
\u3cp\u3eThis letter reports on effective surface passivation of n-type crystalline silicon by ultra...
This letter reports on effective surface passivation of n-type crystalline silicon by ultrathin niob...
This letter reports on effective surface passivation of n-type crystalline silicon by ultrathin niob...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
Passivation of the crystalline silicon surface is central to the attainment of high-efficiency silic...
Passivation of the crystalline silicon surface is central to the attainment of high-efficiency silic...
Surface passivation is essential for high-efficiency crystalline silicon (c-Si) solar cells. Despite...
This letter reports effective passivation of crystalline silicon (c-Si) surfaces by thermal atomic l...