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1 s can be combined in a scalable fashion on a silicon chip.
2 ht is demonstrated in silica waveguides on a silicon chip.
3 res arranged horizontally or vertically on a silicon chip.
4 nels, reagent chambers, and a DNA microarray silicon chip.
5 reagent storage chambers, and DNA microarray silicon chip.
6 t, all-silicon, waveguide cavity on a single silicon chip.
7 l etching process, which produced a flexible silicon chip.
8 eflected light at the surface of an oxidized silicon chip.
9 nic explants or mimicked on a multielectrode silicon chip.
10 idually addressable sites on a micromachined silicon chip.
11 a mass spectrometry electrospray source on a silicon chip.
12  by demagnetisation of thin-film copper on a silicon chip.
13 and functional microelements directly inside silicon chips.
14 nd larger scale quantum photonic circuits on silicon chips.
15 he NMR spectrometer electronics into 4-mm(2) silicon chips.
16 optical devices so as to integrate them into silicon chips.
17 s were immobilized onto microtiter plates or silicon chips.
18 toelectronic components onto CMOS-compatible silicon chips.
19 d lipid bilayers and the surface of oxidized silicon chips.
20 olayers on gold by multiplexed analysis with silicon chips and low-cost electrospun nanofibers.
21 ates (such as buried electronic devices in a silicon chip); and three-dimensional imaging of cryogeni
22                                              Silicon chips are coated with copoly(DMA-NAS-MAPS), a te
23                         Individual donors in silicon chips are used as quantum bits with extremely lo
24                                     However, silicon chips are vulnerable to hazards such as counterf
25 abrication and characterization of a planar, silicon-chip-based optomechanical crystal capable of co-
26 tion volumes of PCR chips (a microfabricated silicon chip bonded to a piece of flat glass to form a P
27 anufactured on a 30-microm-thick crystalline silicon chip by chemical etching process, which produced
28 h to roll out Li-ion battery components from silicon chips by a continuous and repeatable etch-infilt
29 nonclassical light; in fact, CMOS-compatible silicon chips can be used to generate pairs of single ph
30           We applied the recently introduced silicon chip coated with a functional polymer named copo
31 nt of a multiplex SNP detection system using silicon chips coated to create a thin-film optical biose
32 rom hen's egg and cow's milk were spotted on silicon chips coated with copoly(DMA-NAS-MAPS) along wit
33    The isolation process is carried out on a silicon chip containing a five-by-five array of microloc
34               The test device consisted of a silicon chip containing individually addressable microba
35 icrom-deep channel etched in a 3.2-cm-square silicon chip, covered with a Pyrex wafer, and coated wit
36 rom-deep channels, etched in a 1.9-cm square silicon chip, covered with a Pyrex wafer, and statically
37                                              Silicon chips cut or cleaved from commercially available
38 with three electrodes integrated on the same silicon chip dedicated to the detection of herbicides in
39                      We have micromachined a silicon-chip device that transports DNA with a Brownian
40 we here demonstrate an optical isolator on a silicon chip enforced by phase-matched parametric amplif
41 eration and processing and implement it on a silicon chip fabricated in a semiconductor manufacturing
42 mentary metal-oxide-semiconductor compatible silicon chips for wide-ranging applications.
43  and recently, optical waveguide circuits on silicon chips have demonstrated high levels of miniaturi
44 es, are localized within wells etched into a silicon chip in a regular 5 x 7 array.
45                       Using a micropatterned silicon chip in combination with the high-speed Roadrunn
46 ction in liquid-core optical waveguides on a silicon chip in under ten minutes.
47  cells with specificity and sensitivity on a silicon chip platform.
48                  The TIP system incorporates silicon chips tailored to monitor cellular ionic current
49 gorithm on an integrated waveguide silica-on-silicon chip that guides four single-photon qubits throu
50 are detected by probes arrayed on a modified silicon chip that permits visible detection of both RIF-
51 use semiconductor logic gates organized on a silicon chip to enable efficient inter-gate communicatio
52              The implants consisted of small silicon chips (used to mimic small medical devices) that
53 00-fold reduction of the group velocity on a silicon chip via an ultra-compact photonic integrated ci
54 e nonlinear process of four-wave mixing on a silicon chip, we demonstrate a waveform measurement tech
55  gold and nickel thermopile, integrated on a silicon chip which was back-etched to span a 800-nm-thic
56 phisticated photonic quantum circuits onto a silicon chip, which will be of benefit to future quantum
57 ultiple soft polymer layers patterned around silicon chips, which act as surrogates for conventional
58  as 15 degrees C at the targeted region on a silicon chip with a high ( approximately 1,300 W cm-2) h
59                         We report the use of silicon chips with 16 DNA-modified electrodes (DME chips
60                                              Silicon chips with immobilized target DNAs were used for
61  of this pattern are probed by manufacturing silicon chips with terraces of oxide layers of different
62 cal nanoantennas are densely integrated on a silicon chip within a footprint of 576 mum x 576 mum wit
63 trophoresis as well as electronic lysis on a silicon chip would provide essential sample-processing s

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