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☀️起源与里程碑

钙钛矿 · 把实验室光伏效率推高的ABX3卤化物——仍在与潮湿、铅和寿命搏斗。

钙钛矿 did not arrive as a finished commodity. Miyasaka 2009 DSSC; 2012 solid-state jump around Japan / Oxford / Korea still explains who makes it and which tests it sits in.

Ten dated points, five eras and three milestones below are the spine — not a complete industrial history.

起源

Miyasaka 2009 DSSC; 2012 solid-state jumpJapan / Oxford / Korea

年表

1839Rose mineral

Lev Perovski’s namesake oxide mineral is not the solar halide.

2009Miyasaka DSSC

First halide perovskite solar cells, liquid electrolyte, short life.

2012Snaith / Grätzel solid-state

Efficiency leapt; the hype clock started.

2013Science breakthroughs

Journal cover era.

2016IEC stability talk

Damp heat vs lab champion cells.

2018Oxford PV tandem

Perovskite-on-silicon industrial bet.

2020sLead sequestration

Standards and RoHS politics.

2021–NREL chart climb

Certified records still outrun rooftop warranties.

2023+Slot-die / blade

Scale-up tools, pinholes remain.

2020sIndoor IoT cells

A possibly honest near-term niche.

时代

钙钛矿
Dennis Schroeder / National Renewable Energy Laboratory · Public domain · Wikimedia Commons
1839

Rose mineral

Lev Perovski’s namesake oxide mineral is not the solar halide.

2012

Snaith / Grätzel solid-state

Efficiency leapt; the hype clock started.

2016

IEC stability talk

Damp heat vs lab champion cells.

2020s

Lead sequestration

Standards and RoHS politics.

2023+

Slot-die / blade

Scale-up tools, pinholes remain.

里程碑

Science breakthroughs

2013

Journal cover era.

Lead sequestration

2020s

Standards and RoHS politics.

Indoor IoT cells

2020s

A possibly honest near-term niche.

Knowing this timeline is how to read a mill certificate without treating 钙钛矿 as timeless.

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先进固体中的其他材料