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1 city with ease by solvent-free grinding in a ball mill.
2 at room temperature using a laboratory-scale ball-mill.
3 hardly measurable for processes in planetary ball mills.
4 lculate energy input into the powders during ball milling.
5 d the increased grain boundary density after ball milling.
6 d gamma-CDs were subsequently synthesized by ball-milling a mixture of monotosylated alpha-, beta-, a
7 ng with as-synthesized ZIF-4 (ZIF-4.DMF) and ball-milling amorphized ZIF-4 (a(m)ZIF-4) were measured
8 ytes--by solvent-free mechanical mixing in a ball mill and subsequent compression.
9 y resulting from the decreased grain size by ball milling and hot pressing, improved both the peak an
10 al diborides were fabricated via high-energy ball milling and spark plasma sintering.
11 cal modifications such as defects induced by ball-milling and physiological disease conditions, which
12 ical alterations in structure resulting from ball-milling and variations in the environment due to th
13 s (femtosecond laser ablation and mechanical ball milling), and the CoO nanoparticles that result can
14                   Processes inside planetary ball mills are complex and strongly depend on the proces
15                                    Planetary ball mills are well known and used for particle size red
16 y input during direct compression, utilising ball milling as the method of energy input, whilst asses
17                                         This ball-milling-assisted surface protection method may be g
18 rolling the nature and extent of surfaces of ball-milled Bi and hence results in six-fold improvement
19 t demonstrate production of nanosheets using ball milling, but reveals surprising indestructible beha
20 we fabricate graphene nanopowders (~5 nm) by ball-milling commercial multi-wall carbon nanotubes.
21 des under neat conditions at 50 degrees C or ball-milling conditions at room temperature.
22 s, the SREL obtained through preswelling the ball-milled Eucalyptus wood powder in 2, 4 and 8% NaOH s
23  report that a mechanochemical reaction in a ball mill exhibits unusual sigmoidal feedback kinetics t
24  new, nano-sized superlattice (NSS) phase in ball-milled Fe alloys, which maintains coherency with th
25  or phenanthrene and ground manually or in a ball mill for short periods of time.
26  20 min at 320 degrees C or room-temperature ball milling for 3 h.
27              Mesoporous activated carbon was ball-milled for increasing durations and the resultant p
28 maging of motion patterns inside a planetary ball mill from simulations and video recordings is shown
29 e made by hot pressing nanopowders that were ball-milled from crystalline ingots under inert conditio
30  last few years the application of planetary ball mills has extended to mechanochemical approaches.
31                                              Ball-milling, however, may introduce structural defects
32                                              Ball milling in ammonia or hydrocarbon is promising for
33                           On the other hand, ball milling in the solid state is rapid and appears to
34  follow for modelling processes in planetary ball mills in terms of refinement, synthesis' yield and
35 lorides and potassium cyanate in a planetary ball-mill is described.
36 tration upon a prototypical system, CaF2, by ball milling it with BaF2, to create nanostructured Ba1-
37    Gel permeation chromatography of isolated ball-milled lignin indicated significant changes in the
38                                       A mini ball mill (MBM) solvent-free matrix-assisted laser desor
39 sly inaccessible targets, through the use of ball milling mechanochemistry.
40 degradation reaction rate was measured using ball-milled metallic glass powders revealing a low therm
41  I) are prepared by a simple mechanochemical ball-milling method, which allows low-cost and scalable
42       A fast and efficient mechanosynthesis (ball-milling) method of preparing amorphous zeolitic imi
43  surfactants or solid exfoliation agents, as ball milling of bulk precursor materials usually produce
44 or tocochromanol analysis included knife and ball milling of freeze-dried vegetable pieces.
45 of graphene, BN, and MoS2 can be produced by ball milling of their bulk crystals in the presence of a
46 roduced during severe bending or high-energy ball milling of thin ribbons of a metallic glass.
47 phene in-situ grown approach, which involved ball-milling of Cu powders with PMMA as solid carbon sou
48 rate the effect of the geometry of planetary ball mills on the energy entry.
49 es is also an important event encountered in ball milling, powder processing, and everyday activities
50 he biomolecular content of the BC due to the ball-milling process.
51                                  A planetary ball mill proved to be more suitable for the synthesis o
52        Proton conductivity measurements of a ball milled sample of the La complex corroborate this re
53 by the sulfidization of both hand-milled and ball-milled samples of ReO(2); partial conversion of the
54                        A new type of in situ ball mill setup has been developed at the Materials Scie
55                                    Increased ball-milling time of SWCNTs resulted in enhanced structu
56  C-protected amino acids were performed in a ball mill under solvent-free conditions.
57                                              Ball-milling utilizes mechanical stress to modify proper
58                                A vibrational ball mill was used for the preparation of N-protected al
59 nsional (2D) materials can be produced using ball milling with the help of liquid surfactants or soli
60 halcogenides on the surface of alumina under ball-milling without any solvent or metal.

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