EP4520719A1

Process for preparing silicon-containing composite particles

Abstract

In a first aspect, the invention provides a process for preparing silicon-containing composite particles, the process comprising the steps of: (a) providing a plurality of porous particles comprising micropores and/or mesopores, wherein: (i) the D50 particle diameter of the porous particles is in the range from 0.5 to 200 µm; (ii) the total pore volume of micropores and mesopores as measured by gas adsorption is in the range from 0.4 to 2.2 cm3/g; (iii) the PD50 pore diameter as measured by gas adsorption is no more than 30 nm; (b) combining a charge of the porous particles with a charge of a silicon-containing precursor in a batch pressure reactor, wherein the charge of the porous particles has a volume of at least 20 cm3 per litre of reactor volume (cm3/LRV), preferably at least 200 cm3 per litre of reactor volume (cm3/LRV), and wherein the charge of the silicon-containing precursor comprises at least 2 g of silicon per litre of reactor volume (g/LRV); and (c) heating the reactor to a temperature effective to cause deposition of silicon in the pores of the porous particles, thereby providing the silicon-containing composite particles.

EP4520719A1, drawing sheet 1
Sheet 1 of 17

Term

15.1 yearsto projected expiry

Projected expiry 22 October 2041, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

16 claims: 1 independent, 15 dependent

  1. 1
    A process for preparing silicon-containing composite particles, the process comprising the steps of:(a) providing a plurality of porous conductive particles comprising micropores and/or mesopores, wherein: (i) the D 50 particle diameter of the porous conductive particles is in the range from 0.5 to 200 µm;(ii) the total pore volume of micropores and mesopores as measured by gas adsorption is in the range from 0.4 to 2.2 cm 3 /g;(iii) the PD 50 pore diameter as measured by gas adsorption is no more than 30 nm;(b) combining a charge of the porous conductive particles with a charge of a silicon-containing precursor in a batch pressure reactor, wherein the charge of the porous conductive particles has a volume of at least 20 cm 3 per litre of reactor volume (cm 3 /L RV ), and wherein the charge of the silicon-containing precursor comprises at least 2 g of silicon per litre of reactor volume (g/L RV );and (c) heating the reactor to a temperature effective to cause deposition of silicon in the pores of the porous conductive particles, thereby providing the silicon-containing composite particles;wherein the batch pressure reactor is a moving bed batch pressure reactor and wherein the porous particles are agitated during step (c).