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2. Assessing the potential of TOPCon solar cells architecture using industrial n-type cast-mono silicon material

15. Lessons Learned From 25 Years Production Technology Research & Development

16. Status and Perspective of Industrial TOPCon Solar Cell Development at Fraunhofer ISE

17. 21.4% efficient SMART mono-Si PERC solar cells with adapted firing process for LeTID mitigation.

19. LeTID mitigation via an adapted firing process in p‐type PERC cells from SMART cast‐monocrystalline, Czochralski and high‐performance multicrystalline silicon

20. SMART Cast‐Monocrystalline p‐Type Silicon Passivated Emitter and Rear Cells: Efficiency Benchmark and Bulk Lifetime Analysis

21. Internal resistance of rear totally diffused solar cells with line shaped contacts.

27. LeTID mitigation via an adapted firing process in p‐type PERC cells from SMART cast‐monocrystalline, Czochralski and high‐performance multicrystalline silicon.

31. High-temperature degradation in plasma-enhanced chemical vapor deposition Al2O3 surface passivation layers on crystalline silicon.

32. PERC Solar Cells on p-Type Cz-Si Utilizing Phosphorus-Doped SiNX Layers

34. High‐precision alignment procedures for patterning processes in solar cell production.

35. Industry related approaches for bifacial p-type PERX solar cells

39. Advanced analytical model for the effective recombination velocity of locally contacted surfaces.

40. Development and characterization of multifunctional PECVD SiNX:P layers for laser-doped selective emitters

45. Development and Characterization of Multifunctional PECVD SiNX:P Layers for Laser-Doped Selective Emitters.

46. Efficient silicon nitride SiNx:H antireflective and passivation layers deposited by atmospheric pressure PECVD for silicon solar cells.

49. Passivation of Si Surfaces by PECVD Aluminum Oxide

50. Analysis of the losses of industrial-type PERC solar cells.

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